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sdrangel/plugins/samplesink/remoteoutput/udpsinkfec.cpp

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///////////////////////////////////////////////////////////////////////////////////
// Copyright (C) 2017 Edouard Griffiths, F4EXB //
// //
// This program is free software; you can redistribute it and/or modify //
// it under the terms of the GNU General Public License as published by //
// 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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// //
// This program is distributed in the hope that it will be useful, //
// but WITHOUT ANY WARRANTY; without even the implied warranty of //
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the //
// GNU General Public License V3 for more details. //
// //
// You should have received a copy of the GNU General Public License //
// along with this program. If not, see <http://www.gnu.org/licenses/>. //
///////////////////////////////////////////////////////////////////////////////////
#include "udpsinkfec.h"
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#include <QThread>
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#include <QDebug>
#include <boost/crc.hpp>
#include <boost/cstdint.hpp>
#include "util/timeutil.h"
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#include "remoteoutputsender.h"
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UDPSinkFEC::UDPSinkFEC() :
m_sampleRate(48000),
m_nbSamples(0),
m_nbBlocksFEC(0),
m_txDelayRatio(0.0),
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m_txDelay(0),
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m_dataBlock(nullptr),
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m_txBlockIndex(0),
m_txBlocksIndex(0),
m_frameCount(0),
m_sampleIndex(0),
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m_remoteOutputSender(nullptr),
m_senderThread(nullptr),
m_remoteAddress("127.0.0.1"),
m_remotePort(9090)
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{
memset((char *) &m_superBlock, 0, sizeof(RemoteSuperBlock));
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m_currentMetaFEC.init();
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m_senderThread = new QThread(this);
m_remoteOutputSender = new RemoteOutputSender();
m_remoteOutputSender->moveToThread(m_senderThread);
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}
UDPSinkFEC::~UDPSinkFEC()
{
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delete m_remoteOutputSender;
delete m_senderThread;
}
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void UDPSinkFEC::startSender()
{
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qDebug("UDPSinkFEC::startSender");
m_remoteOutputSender->setDestination(m_remoteAddress, m_remotePort);
m_senderThread->start();
}
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void UDPSinkFEC::stopSender()
{
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qDebug("UDPSinkFEC::stopSender");
m_senderThread->exit();
m_senderThread->wait();
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}
void UDPSinkFEC::setTxDelay(float txDelayRatio)
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{
// delay is calculated from the fraction of the nominal UDP block process time
// frame size: 127 * (126 or 63 samples depending on I or Q sample bytes of 2 or 4 bytes respectively)
// divided by sample rate gives the frame process time
// divided by the number of actual blocks including FEC blocks gives the block (i.e. UDP block) process time
m_txDelayRatio = txDelayRatio;
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int samplesPerBlock = RemoteNbBytesPerBlock / sizeof(Sample);
double delay = m_sampleRate == 0 ? 1.0 : (127*samplesPerBlock*txDelayRatio) / m_sampleRate;
delay /= 128 + m_nbBlocksFEC;
m_txDelay = delay * 1e6;
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qDebug() << "UDPSinkFEC::setTxDelay:"
<< "txDelay:" << txDelayRatio
<< "m_txDelay:" << m_txDelay << " us"
<< "m_sampleRate:" << m_sampleRate;
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}
void UDPSinkFEC::setNbBlocksFEC(uint32_t nbBlocksFEC)
{
qDebug() << "UDPSinkFEC::setNbBlocksFEC: nbBlocksFEC: " << nbBlocksFEC;
m_nbBlocksFEC = nbBlocksFEC;
setTxDelay(m_txDelayRatio);
}
void UDPSinkFEC::setSampleRate(uint32_t sampleRate)
{
qDebug() << "UDPSinkFEC::setSampleRate: sampleRate: " << sampleRate;
m_sampleRate = sampleRate;
setTxDelay(m_txDelayRatio);
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}
void UDPSinkFEC::setRemoteAddress(const QString& address, uint16_t port)
{
qDebug() << "UDPSinkFEC::setRemoteAddress: address: " << address << " port: " << port;
m_remoteAddress = address;
m_remotePort = port;
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m_remoteOutputSender->setDestination(m_remoteAddress, m_remotePort);
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}
void UDPSinkFEC::write(const SampleVector::iterator& begin, uint32_t sampleChunkSize)
{
const SampleVector::iterator end = begin + sampleChunkSize;
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SampleVector::const_iterator it = begin;
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while (it != end)
{
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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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{
RemoteMetaDataFEC metaData;
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uint64_t nowus = TimeUtil::nowus();
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metaData.m_centerFrequency = 0; // frequency not set by stream
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metaData.m_sampleRate = m_sampleRate;
metaData.m_sampleBytes = (SDR_RX_SAMP_SZ <= 16 ? 2 : 4);
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 = nowus / 1000000UL; // tv.tv_sec;
metaData.m_tv_usec = nowus % 1000000UL; // tv.tv_usec;
if (!m_dataBlock) { // on the very first cycle there is no data block allocated
m_dataBlock = m_remoteOutputSender->getDataBlock(); // ask a new block to sender
}
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boost::crc_32_type crc32;
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
superBlock.init();
superBlock.m_header.m_frameIndex = m_frameCount;
superBlock.m_header.m_blockIndex = m_txBlockIndex;
superBlock.m_header.m_sampleBytes = (SDR_RX_SAMP_SZ <= 16 ? 2 : 4);
superBlock.m_header.m_sampleBits = SDR_RX_SAMP_SZ;
RemoteMetaDataFEC *destMeta = (RemoteMetaDataFEC *) &superBlock.m_protectedBlock;
*destMeta = metaData;
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if (!(metaData == m_currentMetaFEC))
{
qDebug() << "UDPSinkFEC::write: meta: "
<< "|" << metaData.m_centerFrequency
<< ":" << metaData.m_sampleRate
<< ":" << (int) (metaData.m_sampleBytes & 0xF)
<< ":" << (int) metaData.m_sampleBits
<< "|" << (int) metaData.m_nbOriginalBlocks
<< ":" << (int) metaData.m_nbFECBlocks
<< "|" << metaData.m_tv_sec
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<< ":" << metaData.m_tv_usec;
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m_currentMetaFEC = metaData;
}
m_txBlockIndex = 1; // next Tx block with data
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} // block zero
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// handle different sample sizes...
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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memcpy((void *) &m_superBlock.m_protectedBlock.buf[m_sampleIndex*sizeof(Sample)],
(const void *) &(*(begin+inSamplesIndex)),
inRemainingSamples * sizeof(Sample));
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m_sampleIndex += inRemainingSamples;
it = end; // all input samples are consumed
}
else // complete super block and initiate the next if not end of frame
{
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memcpy((void *) &m_superBlock.m_protectedBlock.buf[m_sampleIndex*sizeof(Sample)],
(const void *) &(*(begin+inSamplesIndex)),
(samplesPerBlock - m_sampleIndex) * sizeof(Sample));
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it += samplesPerBlock - m_sampleIndex;
m_sampleIndex = 0;
m_superBlock.m_header.m_frameIndex = m_frameCount;
m_superBlock.m_header.m_blockIndex = m_txBlockIndex;
m_superBlock.m_header.m_sampleBytes = (SDR_RX_SAMP_SZ <= 16 ? 2 : 4);
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_dataBlock->m_txControlBlock.m_frameIndex = m_frameCount;
m_dataBlock->m_txControlBlock.m_processed = false;
m_dataBlock->m_txControlBlock.m_complete = true;
m_dataBlock->m_txControlBlock.m_nbBlocksFEC = m_nbBlocksFEC;
m_dataBlock->m_txControlBlock.m_txDelay = m_txDelay;
m_dataBlock->m_txControlBlock.m_dataAddress = m_remoteAddress;
m_dataBlock->m_txControlBlock.m_dataPort = m_remotePort;
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m_dataBlock = m_remoteOutputSender->getDataBlock(); // ask a new block to sender
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m_txBlockIndex = 0;
m_frameCount++;
}
else
{
m_txBlockIndex++;
}
}
}
}