2020-10-02 17:45:28 -04:00
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///////////////////////////////////////////////////////////////////////////////////
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// Copyright (C) 2017 Edouard Griffiths, F4EXB //
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// Copyright (C) 2020 Jon Beniston, M7RCE //
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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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// (at your option) any later version. //
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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 <errno.h>
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#include <algorithm>
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#include <QDebug>
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#include "dsp/samplesourcefifo.h"
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#include "usrpoutputthread.h"
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#include "usrpoutputsettings.h"
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2020-10-23 08:12:37 -04:00
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USRPOutputThread::USRPOutputThread(uhd::tx_streamer::sptr stream, size_t bufSamples, SampleSourceFifo* sampleFifo, QObject* parent) :
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2020-10-02 17:45:28 -04:00
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QThread(parent),
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m_running(false),
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m_stream(stream),
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2020-10-23 08:12:37 -04:00
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m_bufSamples(bufSamples),
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2020-10-02 17:45:28 -04:00
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m_sampleFifo(sampleFifo),
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m_log2Interp(0)
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{
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2020-10-23 08:12:37 -04:00
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// *2 as samples are I+Q
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m_buf = new qint16[2*bufSamples];
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std::fill(m_buf, m_buf + 2*bufSamples, 0);
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2020-10-02 17:45:28 -04:00
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}
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USRPOutputThread::~USRPOutputThread()
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{
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stopWork();
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2020-10-23 08:12:37 -04:00
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delete m_buf;
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2020-10-02 17:45:28 -04:00
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}
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void USRPOutputThread::startWork()
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{
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if (m_running) return; // return if running already
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// Reset stats
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m_packets = 0;
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m_underflows = 0;
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m_droppedPackets = 0;
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m_startWaitMutex.lock();
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start();
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while(!m_running)
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m_startWaiter.wait(&m_startWaitMutex, 100);
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m_startWaitMutex.unlock();
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}
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void USRPOutputThread::stopWork()
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{
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uhd::async_metadata_t md;
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if (!m_running) return; // return if not running
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m_running = false;
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wait();
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2020-10-23 08:12:37 -04:00
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try
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{
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// Get message indicating underflow, so it doesn't appear if we restart
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m_stream->recv_async_msg(md);
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}
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catch (std::exception& e)
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{
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qDebug() << "USRPOutputThread::stopWork: exception: " << e.what();
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}
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2020-10-02 17:45:28 -04:00
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qDebug("USRPOutputThread::stopWork: stream stopped");
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}
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void USRPOutputThread::setLog2Interpolation(unsigned int log2_interp)
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{
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m_log2Interp = log2_interp;
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}
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void USRPOutputThread::run()
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{
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uhd::tx_metadata_t md;
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md.start_of_burst = false;
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md.end_of_burst = false;
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m_running = true;
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m_startWaiter.wakeAll();
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qDebug("USRPOutputThread::run");
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while (m_running)
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{
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callback(m_buf, m_bufSamples);
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2020-10-02 17:45:28 -04:00
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try
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{
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const size_t samples_sent = m_stream->send(m_buf, m_bufSamples, md);
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m_packets++;
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2020-10-23 08:12:37 -04:00
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if (samples_sent != m_bufSamples)
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{
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2020-10-26 10:50:00 -04:00
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qDebug("USRPOutputThread::run written %ld/%ld samples", samples_sent, m_bufSamples);
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2020-10-02 17:45:28 -04:00
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}
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}
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catch (std::exception& e)
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{
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qDebug() << "USRPOutputThread::run: exception: " << e.what();
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}
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}
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m_running = false;
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}
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// Interpolate according to specified log2 (ex: log2=4 => decim=16)
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void USRPOutputThread::callback(qint16* buf, qint32 len)
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{
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SampleVector& data = m_sampleFifo->getData();
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unsigned int iPart1Begin, iPart1End, iPart2Begin, iPart2End;
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m_sampleFifo->read(len/(1<<m_log2Interp), iPart1Begin, iPart1End, iPart2Begin, iPart2End);
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if (iPart1Begin != iPart1End) {
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callbackPart(buf, data, iPart1Begin, iPart1End);
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}
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unsigned int shift = (iPart1End - iPart1Begin)*(1<<m_log2Interp);
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if (iPart2Begin != iPart2End) {
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callbackPart(buf + 2*shift, data, iPart2Begin, iPart2End);
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}
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}
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void USRPOutputThread::callbackPart(qint16* buf, SampleVector& data, unsigned int iBegin, unsigned int iEnd)
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{
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SampleVector::iterator beginRead = data.begin() + iBegin;
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int len = 2*(iEnd - iBegin)*(1<<m_log2Interp);
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if (m_log2Interp == 0)
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{
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m_interpolators.interpolate1(&beginRead, buf, len);
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}
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else
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{
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switch (m_log2Interp)
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{
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case 1:
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m_interpolators.interpolate2_cen(&beginRead, buf, len);
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break;
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case 2:
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m_interpolators.interpolate4_cen(&beginRead, buf, len);
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break;
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case 3:
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m_interpolators.interpolate8_cen(&beginRead, buf, len);
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break;
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case 4:
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m_interpolators.interpolate16_cen(&beginRead, buf, len);
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break;
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case 5:
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m_interpolators.interpolate32_cen(&beginRead, buf, len);
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break;
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case 6:
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m_interpolators.interpolate64_cen(&beginRead, buf, len);
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break;
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default:
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break;
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}
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}
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}
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void USRPOutputThread::getStreamStatus(bool& active, quint32& underflows, quint32& droppedPackets)
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{
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uhd::async_metadata_t md;
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if (m_stream->recv_async_msg(md))
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{
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if ((md.event_code == uhd::async_metadata_t::event_code_t::EVENT_CODE_UNDERFLOW)
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|| (md.event_code == uhd::async_metadata_t::event_code_t::EVENT_CODE_UNDERFLOW_IN_PACKET))
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m_underflows++;
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if ((md.event_code == uhd::async_metadata_t::event_code_t::EVENT_CODE_SEQ_ERROR)
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|| (md.event_code == uhd::async_metadata_t::event_code_t::EVENT_CODE_SEQ_ERROR_IN_BURST))
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m_droppedPackets++;
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}
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//qDebug() << "USRPOutputThread::getStreamStatus " << m_packets << " " << m_underflows << " " << m_droppedPackets;
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active = m_packets > 0;
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underflows = m_underflows;
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droppedPackets = m_droppedPackets;
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}
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