mirror of
https://github.com/f4exb/sdrangel.git
synced 2024-11-03 15:31:15 -05:00
646 lines
24 KiB
C++
646 lines
24 KiB
C++
///////////////////////////////////////////////////////////////////////////////////
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// Copyright (C) 2018 Edouard Griffiths, F4EXB. //
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// //
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// Remote sink channel (Rx) UDP sender thread //
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// //
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// SDRangel can work as a detached SDR front end. With this plugin it can //
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// sends the I/Q samples stream to another SDRangel instance via UDP. //
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// It is controlled via a Web REST API. //
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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 "remotesink.h"
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#include <sys/time.h>
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#include <unistd.h>
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#include <boost/crc.hpp>
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#include <boost/cstdint.hpp>
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#include <QNetworkAccessManager>
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#include <QNetworkReply>
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#include <QBuffer>
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#include "SWGChannelSettings.h"
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#include "util/simpleserializer.h"
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#include "dsp/threadedbasebandsamplesink.h"
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#include "dsp/downchannelizer.h"
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#include "dsp/dspcommands.h"
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#include "dsp/hbfilterchainconverter.h"
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#include "device/deviceapi.h"
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#include "remotesinkthread.h"
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MESSAGE_CLASS_DEFINITION(RemoteSink::MsgConfigureRemoteSink, Message)
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MESSAGE_CLASS_DEFINITION(RemoteSink::MsgSampleRateNotification, Message)
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MESSAGE_CLASS_DEFINITION(RemoteSink::MsgConfigureChannelizer, Message)
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const QString RemoteSink::m_channelIdURI = "sdrangel.channel.remotesink";
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const QString RemoteSink::m_channelId = "RemoteSink";
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RemoteSink::RemoteSink(DeviceAPI *deviceAPI) :
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ChannelAPI(m_channelIdURI, ChannelAPI::StreamSingleSink),
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m_deviceAPI(deviceAPI),
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m_running(false),
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m_sinkThread(0),
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m_txBlockIndex(0),
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m_frameCount(0),
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m_sampleIndex(0),
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m_dataBlock(0),
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m_centerFrequency(0),
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m_frequencyOffset(0),
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m_sampleRate(48000),
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m_deviceSampleRate(48000),
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m_nbBlocksFEC(0),
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m_txDelay(35),
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m_dataAddress("127.0.0.1"),
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m_dataPort(9090)
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{
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setObjectName(m_channelId);
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m_channelizer = new DownChannelizer(this);
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m_threadedChannelizer = new ThreadedBasebandSampleSink(m_channelizer, this);
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m_deviceAPI->addChannelSink(m_threadedChannelizer);
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m_deviceAPI->addChannelSinkAPI(this);
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m_networkManager = new QNetworkAccessManager();
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connect(m_networkManager, SIGNAL(finished(QNetworkReply*)), this, SLOT(networkManagerFinished(QNetworkReply*)));
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}
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RemoteSink::~RemoteSink()
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{
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disconnect(m_networkManager, SIGNAL(finished(QNetworkReply*)), this, SLOT(networkManagerFinished(QNetworkReply*)));
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delete m_networkManager;
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m_dataBlockMutex.lock();
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if (m_dataBlock && !m_dataBlock->m_txControlBlock.m_complete) {
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delete m_dataBlock;
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}
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m_dataBlockMutex.unlock();
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m_deviceAPI->removeChannelSinkAPI(this);
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m_deviceAPI->removeChannelSink(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 RemoteSink::setTxDelay(int txDelay, int nbBlocksFEC)
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{
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double txDelayRatio = txDelay / 100.0;
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int samplesPerBlock = RemoteNbBytesPerBlock / sizeof(Sample);
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double delay = m_sampleRate == 0 ? 1.0 : (127*samplesPerBlock*txDelayRatio) / m_sampleRate;
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delay /= 128 + nbBlocksFEC;
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m_txDelay = roundf(delay*1e6); // microseconds
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qDebug() << "RemoteSink::setTxDelay:"
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<< " " << txDelay
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<< "% m_txDelay: " << m_txDelay << "us"
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<< " m_sampleRate: " << m_sampleRate << "S/s";
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}
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void RemoteSink::setNbBlocksFEC(int nbBlocksFEC)
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{
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qDebug() << "RemoteSink::setNbBlocksFEC: nbBlocksFEC: " << nbBlocksFEC;
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m_nbBlocksFEC = nbBlocksFEC;
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}
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void RemoteSink::feed(const SampleVector::const_iterator& begin, const SampleVector::const_iterator& end, bool firstOfBurst)
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{
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(void) firstOfBurst;
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SampleVector::const_iterator it = begin;
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while (it != end)
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{
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int inSamplesIndex = it - begin;
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int inRemainingSamples = end - it;
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if (m_txBlockIndex == 0)
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{
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struct timeval tv;
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RemoteMetaDataFEC metaData;
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gettimeofday(&tv, 0);
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metaData.m_centerFrequency = m_centerFrequency + m_frequencyOffset;
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metaData.m_sampleRate = m_sampleRate;
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metaData.m_sampleBytes = (SDR_RX_SAMP_SZ <= 16 ? 2 : 4);
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metaData.m_sampleBits = SDR_RX_SAMP_SZ;
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metaData.m_nbOriginalBlocks = RemoteNbOrginalBlocks;
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metaData.m_nbFECBlocks = m_nbBlocksFEC;
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metaData.m_tv_sec = tv.tv_sec;
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metaData.m_tv_usec = tv.tv_usec;
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if (!m_dataBlock) { // on the very first cycle there is no data block allocated
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m_dataBlock = new RemoteDataBlock();
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}
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boost::crc_32_type crc32;
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crc32.process_bytes(&metaData, sizeof(RemoteMetaDataFEC)-4);
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metaData.m_crc32 = crc32.checksum();
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RemoteSuperBlock& superBlock = m_dataBlock->m_superBlocks[0]; // first block
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superBlock.init();
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superBlock.m_header.m_frameIndex = m_frameCount;
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superBlock.m_header.m_blockIndex = m_txBlockIndex;
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superBlock.m_header.m_sampleBytes = (SDR_RX_SAMP_SZ <= 16 ? 2 : 4);
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superBlock.m_header.m_sampleBits = SDR_RX_SAMP_SZ;
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RemoteMetaDataFEC *destMeta = (RemoteMetaDataFEC *) &superBlock.m_protectedBlock;
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*destMeta = metaData;
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if (!(metaData == m_currentMetaFEC))
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{
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qDebug() << "RemoteSink::feed: meta: "
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<< "|" << metaData.m_centerFrequency
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<< ":" << metaData.m_sampleRate
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<< ":" << (int) (metaData.m_sampleBytes & 0xF)
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<< ":" << (int) metaData.m_sampleBits
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<< "|" << (int) metaData.m_nbOriginalBlocks
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<< ":" << (int) metaData.m_nbFECBlocks
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<< "|" << metaData.m_tv_sec
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<< ":" << metaData.m_tv_usec;
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m_currentMetaFEC = metaData;
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}
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m_txBlockIndex = 1; // next Tx block with data
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} // block zero
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// handle different sample sizes...
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int samplesPerBlock = RemoteNbBytesPerBlock / (SDR_RX_SAMP_SZ <= 16 ? 4 : 8); // two I or Q samples
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if (m_sampleIndex + inRemainingSamples < samplesPerBlock) // there is still room in the current super block
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{
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memcpy((void *) &m_superBlock.m_protectedBlock.buf[m_sampleIndex*sizeof(Sample)],
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(const void *) &(*(begin+inSamplesIndex)),
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inRemainingSamples * sizeof(Sample));
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m_sampleIndex += inRemainingSamples;
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it = end; // all input samples are consumed
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}
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else // complete super block and initiate the next if not end of frame
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{
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memcpy((void *) &m_superBlock.m_protectedBlock.buf[m_sampleIndex*sizeof(Sample)],
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(const void *) &(*(begin+inSamplesIndex)),
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(samplesPerBlock - m_sampleIndex) * sizeof(Sample));
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it += samplesPerBlock - m_sampleIndex;
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m_sampleIndex = 0;
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m_superBlock.m_header.m_frameIndex = m_frameCount;
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m_superBlock.m_header.m_blockIndex = m_txBlockIndex;
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m_superBlock.m_header.m_sampleBytes = (SDR_RX_SAMP_SZ <= 16 ? 2 : 4);
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m_superBlock.m_header.m_sampleBits = SDR_RX_SAMP_SZ;
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m_dataBlock->m_superBlocks[m_txBlockIndex] = m_superBlock;
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if (m_txBlockIndex == RemoteNbOrginalBlocks - 1) // frame complete
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{
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m_dataBlockMutex.lock();
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m_dataBlock->m_txControlBlock.m_frameIndex = m_frameCount;
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m_dataBlock->m_txControlBlock.m_processed = false;
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m_dataBlock->m_txControlBlock.m_complete = true;
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m_dataBlock->m_txControlBlock.m_nbBlocksFEC = m_nbBlocksFEC;
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m_dataBlock->m_txControlBlock.m_txDelay = m_txDelay;
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m_dataBlock->m_txControlBlock.m_dataAddress = m_dataAddress;
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m_dataBlock->m_txControlBlock.m_dataPort = m_dataPort;
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emit dataBlockAvailable(m_dataBlock);
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m_dataBlock = new RemoteDataBlock(); // create a new one immediately
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m_dataBlockMutex.unlock();
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m_txBlockIndex = 0;
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m_frameCount++;
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}
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else
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{
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m_txBlockIndex++;
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}
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}
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}
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}
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void RemoteSink::start()
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{
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qDebug("RemoteSink::start");
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memset((void *) &m_currentMetaFEC, 0, sizeof(RemoteMetaDataFEC));
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if (m_running) {
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stop();
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}
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m_sinkThread = new RemoteSinkThread();
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connect(this,
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SIGNAL(dataBlockAvailable(RemoteDataBlock *)),
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m_sinkThread,
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SLOT(processDataBlock(RemoteDataBlock *)),
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Qt::QueuedConnection);
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m_sinkThread->startStop(true);
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m_running = true;
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}
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void RemoteSink::stop()
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{
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qDebug("RemoteSink::stop");
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if (m_sinkThread != 0)
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{
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m_sinkThread->startStop(false);
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m_sinkThread->deleteLater();
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m_sinkThread = 0;
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}
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m_running = false;
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}
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bool RemoteSink::handleMessage(const Message& cmd)
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{
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(void) cmd;
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if (DownChannelizer::MsgChannelizerNotification::match(cmd))
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{
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DownChannelizer::MsgChannelizerNotification& notif = (DownChannelizer::MsgChannelizerNotification&) cmd;
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qDebug() << "RemoteSink::handleMessage: MsgChannelizerNotification:"
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<< " channelSampleRate: " << notif.getSampleRate()
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<< " offsetFrequency: " << notif.getFrequencyOffset();
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if (notif.getSampleRate() > 0) {
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setSampleRate(notif.getSampleRate());
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}
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setTxDelay(m_settings.m_txDelay, m_settings.m_nbFECBlocks);
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return true;
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}
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else if (DSPSignalNotification::match(cmd))
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{
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DSPSignalNotification& notif = (DSPSignalNotification&) cmd;
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qDebug() << "RemoteSink::handleMessage: DSPSignalNotification:"
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<< " inputSampleRate: " << notif.getSampleRate()
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<< " centerFrequency: " << notif.getCenterFrequency();
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setCenterFrequency(notif.getCenterFrequency());
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m_deviceSampleRate = notif.getSampleRate();
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calculateFrequencyOffset(); // This is when device sample rate changes
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// Redo the channelizer stuff with the new sample rate to re-synchronize everything
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m_channelizer->set(m_channelizer->getInputMessageQueue(),
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m_settings.m_log2Decim,
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m_settings.m_filterChainHash);
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if (m_guiMessageQueue)
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{
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MsgSampleRateNotification *msg = MsgSampleRateNotification::create(notif.getSampleRate());
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m_guiMessageQueue->push(msg);
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}
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return true;
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}
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else if (MsgConfigureRemoteSink::match(cmd))
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{
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MsgConfigureRemoteSink& cfg = (MsgConfigureRemoteSink&) cmd;
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qDebug() << "RemoteSink::handleMessage: MsgConfigureRemoteSink";
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applySettings(cfg.getSettings(), cfg.getForce());
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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_settings.m_log2Decim = cfg.getLog2Decim();
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m_settings.m_filterChainHash = cfg.getFilterChainHash();
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qDebug() << "RemoteSink::handleMessage: MsgConfigureChannelizer:"
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<< " log2Decim: " << m_settings.m_log2Decim
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<< " filterChainHash: " << m_settings.m_filterChainHash;
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m_channelizer->set(m_channelizer->getInputMessageQueue(),
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m_settings.m_log2Decim,
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m_settings.m_filterChainHash);
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calculateFrequencyOffset(); // This is when decimation or filter chain changes
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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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QByteArray RemoteSink::serialize() const
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{
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return m_settings.serialize();
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}
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bool RemoteSink::deserialize(const QByteArray& data)
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{
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(void) data;
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if (m_settings.deserialize(data))
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{
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MsgConfigureRemoteSink *msg = MsgConfigureRemoteSink::create(m_settings, true);
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m_inputMessageQueue.push(msg);
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return true;
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}
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else
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{
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m_settings.resetToDefaults();
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MsgConfigureRemoteSink *msg = MsgConfigureRemoteSink::create(m_settings, true);
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m_inputMessageQueue.push(msg);
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return false;
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}
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}
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void RemoteSink::applySettings(const RemoteSinkSettings& settings, bool force)
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{
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qDebug() << "RemoteSink::applySettings:"
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<< " m_nbFECBlocks: " << settings.m_nbFECBlocks
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<< " m_txDelay: " << settings.m_txDelay
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<< " m_dataAddress: " << settings.m_dataAddress
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<< " m_dataPort: " << settings.m_dataPort
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<< " force: " << force;
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QList<QString> reverseAPIKeys;
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if ((m_settings.m_nbFECBlocks != settings.m_nbFECBlocks) || force)
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{
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reverseAPIKeys.append("nbFECBlocks");
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setNbBlocksFEC(settings.m_nbFECBlocks);
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setTxDelay(settings.m_txDelay, settings.m_nbFECBlocks);
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}
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if ((m_settings.m_txDelay != settings.m_txDelay) || force)
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{
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reverseAPIKeys.append("txDelay");
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setTxDelay(settings.m_txDelay, settings.m_nbFECBlocks);
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}
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if ((m_settings.m_dataAddress != settings.m_dataAddress) || force)
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{
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reverseAPIKeys.append("dataAddress");
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m_dataAddress = settings.m_dataAddress;
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}
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if ((m_settings.m_dataPort != settings.m_dataPort) || force)
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{
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reverseAPIKeys.append("dataPort");
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m_dataPort = settings.m_dataPort;
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}
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if ((settings.m_useReverseAPI) && (reverseAPIKeys.size() != 0))
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{
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bool fullUpdate = ((m_settings.m_useReverseAPI != settings.m_useReverseAPI) && settings.m_useReverseAPI) ||
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(m_settings.m_reverseAPIAddress != settings.m_reverseAPIAddress) ||
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(m_settings.m_reverseAPIPort != settings.m_reverseAPIPort) ||
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(m_settings.m_reverseAPIDeviceIndex != settings.m_reverseAPIDeviceIndex) ||
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(m_settings.m_reverseAPIChannelIndex != settings.m_reverseAPIChannelIndex);
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webapiReverseSendSettings(reverseAPIKeys, settings, fullUpdate || force);
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}
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m_settings = settings;
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}
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void RemoteSink::validateFilterChainHash(RemoteSinkSettings& settings)
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{
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unsigned int s = 1;
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for (unsigned int i = 0; i < settings.m_log2Decim; i++) {
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s *= 3;
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}
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settings.m_filterChainHash = settings.m_filterChainHash >= s ? s-1 : settings.m_filterChainHash;
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}
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void RemoteSink::calculateFrequencyOffset()
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{
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double shiftFactor = HBFilterChainConverter::getShiftFactor(m_settings.m_log2Decim, m_settings.m_filterChainHash);
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m_frequencyOffset = m_deviceSampleRate * shiftFactor;
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}
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int RemoteSink::webapiSettingsGet(
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SWGSDRangel::SWGChannelSettings& response,
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QString& errorMessage)
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{
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(void) errorMessage;
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response.setRemoteSinkSettings(new SWGSDRangel::SWGRemoteSinkSettings());
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response.getRemoteSinkSettings()->init();
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webapiFormatChannelSettings(response, m_settings);
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return 200;
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}
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int RemoteSink::webapiSettingsPutPatch(
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bool force,
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const QStringList& channelSettingsKeys,
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SWGSDRangel::SWGChannelSettings& response,
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QString& errorMessage)
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{
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(void) errorMessage;
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RemoteSinkSettings settings = m_settings;
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if (channelSettingsKeys.contains("nbFECBlocks"))
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{
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int nbFECBlocks = response.getRemoteSinkSettings()->getNbFecBlocks();
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if ((nbFECBlocks < 0) || (nbFECBlocks > 127)) {
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settings.m_nbFECBlocks = 8;
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} else {
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settings.m_nbFECBlocks = response.getRemoteSinkSettings()->getNbFecBlocks();
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}
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}
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if (channelSettingsKeys.contains("txDelay"))
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{
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int txDelay = response.getRemoteSinkSettings()->getTxDelay();
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if (txDelay < 0) {
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settings.m_txDelay = 35;
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} else {
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settings.m_txDelay = txDelay;
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}
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}
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if (channelSettingsKeys.contains("dataAddress")) {
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settings.m_dataAddress = *response.getRemoteSinkSettings()->getDataAddress();
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}
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if (channelSettingsKeys.contains("dataPort"))
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{
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int dataPort = response.getRemoteSinkSettings()->getDataPort();
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if ((dataPort < 1024) || (dataPort > 65535)) {
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settings.m_dataPort = 9090;
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} else {
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settings.m_dataPort = dataPort;
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}
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}
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if (channelSettingsKeys.contains("rgbColor")) {
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settings.m_rgbColor = response.getRemoteSinkSettings()->getRgbColor();
|
|
}
|
|
if (channelSettingsKeys.contains("title")) {
|
|
settings.m_title = *response.getRemoteSinkSettings()->getTitle();
|
|
}
|
|
if (channelSettingsKeys.contains("log2Decim")) {
|
|
settings.m_log2Decim = response.getRemoteSinkSettings()->getLog2Decim();
|
|
}
|
|
|
|
if (channelSettingsKeys.contains("filterChainHash"))
|
|
{
|
|
settings.m_filterChainHash = response.getRemoteSinkSettings()->getFilterChainHash();
|
|
validateFilterChainHash(settings);
|
|
}
|
|
|
|
if (channelSettingsKeys.contains("useReverseAPI")) {
|
|
settings.m_useReverseAPI = response.getRemoteSinkSettings()->getUseReverseApi() != 0;
|
|
}
|
|
if (channelSettingsKeys.contains("reverseAPIAddress")) {
|
|
settings.m_reverseAPIAddress = *response.getRemoteSinkSettings()->getReverseApiAddress();
|
|
}
|
|
if (channelSettingsKeys.contains("reverseAPIPort")) {
|
|
settings.m_reverseAPIPort = response.getRemoteSinkSettings()->getReverseApiPort();
|
|
}
|
|
if (channelSettingsKeys.contains("reverseAPIDeviceIndex")) {
|
|
settings.m_reverseAPIDeviceIndex = response.getRemoteSinkSettings()->getReverseApiDeviceIndex();
|
|
}
|
|
if (channelSettingsKeys.contains("reverseAPIChannelIndex")) {
|
|
settings.m_reverseAPIChannelIndex = response.getRemoteSinkSettings()->getReverseApiChannelIndex();
|
|
}
|
|
|
|
MsgConfigureRemoteSink *msg = MsgConfigureRemoteSink::create(settings, force);
|
|
m_inputMessageQueue.push(msg);
|
|
|
|
if ((settings.m_log2Decim != m_settings.m_log2Decim) || (settings.m_filterChainHash != m_settings.m_filterChainHash) || force)
|
|
{
|
|
MsgConfigureChannelizer *msg = MsgConfigureChannelizer::create(settings.m_log2Decim, settings.m_filterChainHash);
|
|
m_inputMessageQueue.push(msg);
|
|
}
|
|
|
|
qDebug("RemoteSink::webapiSettingsPutPatch: forward to GUI: %p", m_guiMessageQueue);
|
|
if (m_guiMessageQueue) // forward to GUI if any
|
|
{
|
|
MsgConfigureRemoteSink *msgToGUI = MsgConfigureRemoteSink::create(settings, force);
|
|
m_guiMessageQueue->push(msgToGUI);
|
|
}
|
|
|
|
webapiFormatChannelSettings(response, settings);
|
|
|
|
return 200;
|
|
}
|
|
|
|
void RemoteSink::webapiFormatChannelSettings(SWGSDRangel::SWGChannelSettings& response, const RemoteSinkSettings& settings)
|
|
{
|
|
response.getRemoteSinkSettings()->setNbFecBlocks(settings.m_nbFECBlocks);
|
|
response.getRemoteSinkSettings()->setTxDelay(settings.m_txDelay);
|
|
|
|
if (response.getRemoteSinkSettings()->getDataAddress()) {
|
|
*response.getRemoteSinkSettings()->getDataAddress() = settings.m_dataAddress;
|
|
} else {
|
|
response.getRemoteSinkSettings()->setDataAddress(new QString(settings.m_dataAddress));
|
|
}
|
|
|
|
response.getRemoteSinkSettings()->setDataPort(settings.m_dataPort);
|
|
response.getRemoteSinkSettings()->setRgbColor(settings.m_rgbColor);
|
|
|
|
if (response.getRemoteSinkSettings()->getTitle()) {
|
|
*response.getRemoteSinkSettings()->getTitle() = settings.m_title;
|
|
} else {
|
|
response.getRemoteSinkSettings()->setTitle(new QString(settings.m_title));
|
|
}
|
|
|
|
response.getRemoteSinkSettings()->setLog2Decim(settings.m_log2Decim);
|
|
response.getRemoteSinkSettings()->setFilterChainHash(settings.m_filterChainHash);
|
|
response.getRemoteSinkSettings()->setUseReverseApi(settings.m_useReverseAPI ? 1 : 0);
|
|
|
|
if (response.getRemoteSinkSettings()->getReverseApiAddress()) {
|
|
*response.getRemoteSinkSettings()->getReverseApiAddress() = settings.m_reverseAPIAddress;
|
|
} else {
|
|
response.getRemoteSinkSettings()->setReverseApiAddress(new QString(settings.m_reverseAPIAddress));
|
|
}
|
|
|
|
response.getRemoteSinkSettings()->setReverseApiPort(settings.m_reverseAPIPort);
|
|
response.getRemoteSinkSettings()->setReverseApiDeviceIndex(settings.m_reverseAPIDeviceIndex);
|
|
response.getRemoteSinkSettings()->setReverseApiChannelIndex(settings.m_reverseAPIChannelIndex);
|
|
}
|
|
|
|
void RemoteSink::webapiReverseSendSettings(QList<QString>& channelSettingsKeys, const RemoteSinkSettings& settings, bool force)
|
|
{
|
|
SWGSDRangel::SWGChannelSettings *swgChannelSettings = new SWGSDRangel::SWGChannelSettings();
|
|
swgChannelSettings->setDirection(0); // single sink (Rx)
|
|
swgChannelSettings->setOriginatorChannelIndex(getIndexInDeviceSet());
|
|
swgChannelSettings->setOriginatorDeviceSetIndex(getDeviceSetIndex());
|
|
swgChannelSettings->setChannelType(new QString("RemoteSink"));
|
|
swgChannelSettings->setRemoteSinkSettings(new SWGSDRangel::SWGRemoteSinkSettings());
|
|
SWGSDRangel::SWGRemoteSinkSettings *swgRemoteSinkSettings = swgChannelSettings->getRemoteSinkSettings();
|
|
|
|
// transfer data that has been modified. When force is on transfer all data except reverse API data
|
|
|
|
if (channelSettingsKeys.contains("nbFECBlocks") || force) {
|
|
swgRemoteSinkSettings->setNbFecBlocks(settings.m_nbFECBlocks);
|
|
}
|
|
if (channelSettingsKeys.contains("txDelay") || force)
|
|
{
|
|
swgRemoteSinkSettings->setTxDelay(settings.m_txDelay);
|
|
}
|
|
if (channelSettingsKeys.contains("dataAddress") || force) {
|
|
swgRemoteSinkSettings->setDataAddress(new QString(settings.m_dataAddress));
|
|
}
|
|
if (channelSettingsKeys.contains("dataPort") || force) {
|
|
swgRemoteSinkSettings->setDataPort(settings.m_dataPort);
|
|
}
|
|
if (channelSettingsKeys.contains("rgbColor") || force) {
|
|
swgRemoteSinkSettings->setRgbColor(settings.m_rgbColor);
|
|
}
|
|
if (channelSettingsKeys.contains("title") || force) {
|
|
swgRemoteSinkSettings->setTitle(new QString(settings.m_title));
|
|
}
|
|
if (channelSettingsKeys.contains("log2Decim") || force) {
|
|
swgRemoteSinkSettings->setLog2Decim(settings.m_log2Decim);
|
|
}
|
|
if (channelSettingsKeys.contains("filterChainHash") || force) {
|
|
swgRemoteSinkSettings->setFilterChainHash(settings.m_filterChainHash);
|
|
}
|
|
|
|
QString channelSettingsURL = QString("http://%1:%2/sdrangel/deviceset/%3/channel/%4/settings")
|
|
.arg(settings.m_reverseAPIAddress)
|
|
.arg(settings.m_reverseAPIPort)
|
|
.arg(settings.m_reverseAPIDeviceIndex)
|
|
.arg(settings.m_reverseAPIChannelIndex);
|
|
m_networkRequest.setUrl(QUrl(channelSettingsURL));
|
|
m_networkRequest.setHeader(QNetworkRequest::ContentTypeHeader, "application/json");
|
|
|
|
QBuffer *buffer=new QBuffer();
|
|
buffer->open((QBuffer::ReadWrite));
|
|
buffer->write(swgChannelSettings->asJson().toUtf8());
|
|
buffer->seek(0);
|
|
|
|
// Always use PATCH to avoid passing reverse API settings
|
|
m_networkManager->sendCustomRequest(m_networkRequest, "PATCH", buffer);
|
|
|
|
delete swgChannelSettings;
|
|
}
|
|
|
|
void RemoteSink::networkManagerFinished(QNetworkReply *reply)
|
|
{
|
|
QNetworkReply::NetworkError replyError = reply->error();
|
|
|
|
if (replyError)
|
|
{
|
|
qWarning() << "RemoteSink::networkManagerFinished:"
|
|
<< " error(" << (int) replyError
|
|
<< "): " << replyError
|
|
<< ": " << reply->errorString();
|
|
return;
|
|
}
|
|
|
|
QString answer = reply->readAll();
|
|
answer.chop(1); // remove last \n
|
|
qDebug("RemoteSink::networkManagerFinished: reply:\n%s", answer.toStdString().c_str());
|
|
}
|