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			235 lines
		
	
	
		
			7.9 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			235 lines
		
	
	
		
			7.9 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
///////////////////////////////////////////////////////////////////////////////////
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// Copyright (C) 2019 Edouard Griffiths, F4EXB                                   //
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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 "samplemofifo.h"
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const unsigned int SampleMOFifo::m_rwDivisor = 2;
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const unsigned int SampleMOFifo::m_guardDivisor = 10;
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SampleMOFifo::SampleMOFifo(QObject *parent) :
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    QObject(parent),
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    m_nbStreams(0)
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{}
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SampleMOFifo::SampleMOFifo(unsigned int nbStreams, unsigned int size, QObject *parent) :
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    QObject(parent)
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{
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    init(nbStreams, size);
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}
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void SampleMOFifo::init(unsigned int nbStreams, unsigned int size)
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{
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    QMutexLocker mutexLocker(&m_mutex);
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    m_data.resize(nbStreams);
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    m_vReadCount.resize(nbStreams);
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    m_vReadHead.resize(nbStreams);
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    m_vWriteHead.resize(nbStreams);
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    m_nbStreams = nbStreams;
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    resize(size);
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}
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void SampleMOFifo::resize(unsigned int size)
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{
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    QMutexLocker mutexLocker(&m_mutex);
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    m_size = size;
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    m_lowGuard = m_size / m_guardDivisor;
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    m_highGuard = m_size - (m_size/m_guardDivisor);
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    m_midPoint = m_size / m_rwDivisor;
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    for (unsigned int stream = 0; stream < m_nbStreams; stream++) {
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        m_data[stream].resize(size);
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    }
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    reset();
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}
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void SampleMOFifo::reset()
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{
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    QMutexLocker mutexLocker(&m_mutex);
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	m_readCount = 0;
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    m_readHead = 0;
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    m_writeHead = m_midPoint;
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    for (unsigned int stream = 0; stream < m_nbStreams; stream++)
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    {
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        m_vReadCount[stream] = 0;
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        m_vReadHead[stream] = 0;
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        m_vWriteHead[stream] = m_midPoint;
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    }
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}
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SampleMOFifo::~SampleMOFifo()
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{}
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void SampleMOFifo::readSync(
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    unsigned int amount,
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    unsigned int& ipart1Begin, unsigned int& ipart1End, // first part offsets where to read
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    unsigned int& ipart2Begin, unsigned int& ipart2End  // second part offsets
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)
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{
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    QMutexLocker mutexLocker(&m_mutex);
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    unsigned int spaceLeft = m_size - m_readHead;
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    m_readCount = m_readCount + amount < m_size ? m_readCount + amount : m_size; // cannot exceed FIFO size
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    if (amount <= spaceLeft)
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    {
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        ipart1Begin = m_readHead;
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        ipart1End = m_readHead + amount;
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        ipart2Begin = m_size;
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        ipart2End = m_size;
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        m_readHead += amount;
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    }
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    else
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    {
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        unsigned int remaining = (amount < m_size ? amount : m_size) - spaceLeft;
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        ipart1Begin = m_readHead;
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        ipart1End = m_size;
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        ipart2Begin = 0;
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        ipart2End = remaining;
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        m_readHead = remaining;
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    }
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    emit dataReadSync();
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}
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void SampleMOFifo::writeSync(
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    unsigned int amount,
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    unsigned int& ipart1Begin, unsigned int& ipart1End, // first part offsets where to write
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    unsigned int& ipart2Begin, unsigned int& ipart2End  // second part offsets
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)
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{
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    QMutexLocker mutexLocker(&m_mutex);
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    unsigned int rwDelta = m_writeHead >= m_readHead ? m_writeHead - m_readHead : m_size - (m_readHead - m_writeHead);
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    if (rwDelta < m_lowGuard)
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    {
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        qWarning("SampleMOFifo::write: underrun (write too slow) using %d old samples", m_midPoint - m_lowGuard);
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        m_writeHead = m_readHead + m_midPoint < m_size ? m_readHead + m_midPoint : m_readHead + m_midPoint - m_size;
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    }
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    else if (rwDelta > m_highGuard)
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    {
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        qWarning("SampleMOFifo::write: overrun (read too slow) dropping %d samples", m_highGuard - m_midPoint);
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        m_writeHead = m_readHead + m_midPoint < m_size ? m_readHead + m_midPoint : m_readHead + m_midPoint - m_size;
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    }
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    unsigned int spaceLeft = m_size - m_writeHead;
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    if (amount <= spaceLeft)
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    {
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        ipart1Begin = m_writeHead;
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        ipart1End = m_writeHead + amount;
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        ipart2Begin = m_size;
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        ipart2End = m_size;
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        m_writeHead += amount;
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    }
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    else
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    {
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        unsigned int remaining = (amount < m_size ? amount : m_size) - spaceLeft;
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        ipart1Begin = m_writeHead;
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        ipart1End = m_size;
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        ipart2Begin = 0;
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        ipart2End = remaining;
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        m_writeHead = remaining;
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    }
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    m_readCount = amount < m_readCount ? m_readCount - amount : 0; // cannot be less than 0
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}
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void SampleMOFifo::readAsync(
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    unsigned int amount,
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    unsigned int& ipart1Begin, unsigned int& ipart1End,
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    unsigned int& ipart2Begin, unsigned int& ipart2End,
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    unsigned int stream
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)
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{
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    QMutexLocker mutexLocker(&m_mutex);
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    unsigned int spaceLeft = m_size - m_vReadHead[stream];
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    m_vReadCount[stream] = m_vReadCount[stream] + amount < m_size ? m_vReadCount[stream] + amount : m_size; // cannot exceed FIFO size
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    if (amount <= spaceLeft)
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    {
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        ipart1Begin = m_vReadHead[stream];
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        ipart1End = m_vReadHead[stream] + amount;
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        ipart2Begin = m_size;
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        ipart2End = m_size;
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        m_vReadHead[stream] += amount;
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    }
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    else
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    {
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        unsigned int remaining = (amount < m_size ? amount : m_size) - spaceLeft;
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        ipart1Begin = m_vReadHead[stream];
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        ipart1End = m_size;
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        ipart2Begin = 0;
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        ipart2End = remaining;
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        m_vReadHead[stream] = remaining;
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    }
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    emit dataReadAsync(stream);
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}
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void SampleMOFifo::writeAsync( //!< in place write with given amount
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    unsigned int amount,
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    unsigned int& ipart1Begin, unsigned int& ipart1End,
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    unsigned int& ipart2Begin, unsigned int& ipart2End,
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    unsigned int stream
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)
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{
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    QMutexLocker mutexLocker(&m_mutex);
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    unsigned int rwDelta = m_vWriteHead[stream] >= m_vReadHead[stream] ?
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        m_vWriteHead[stream] - m_vReadHead[stream] : m_size - (m_vReadHead[stream] - m_vWriteHead[stream]);
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    if (rwDelta < m_lowGuard)
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    {
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        qWarning("SampleMOFifo::write: underrun on stream %u (write too slow) using %d old samples", stream, m_midPoint - m_lowGuard);
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        m_vWriteHead[stream] = m_vReadHead[stream] + m_midPoint < m_size ?
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            m_vReadHead[stream] + m_midPoint : m_vReadHead[stream] + m_midPoint - m_size;
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    }
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    else if (rwDelta > m_highGuard)
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    {
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        qWarning("SampleMOFifo::write: overrun on stream %u (read too slow) dropping %d samples", stream, m_highGuard - m_midPoint);
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        m_vWriteHead[stream] = m_vReadHead[stream] + m_midPoint < m_size ?
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            m_vReadHead[stream] + m_midPoint : m_vReadHead[stream] + m_midPoint - m_size;
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    }
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    unsigned int spaceLeft = m_size - m_vWriteHead[stream];
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    if (amount <= spaceLeft)
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    {
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        ipart1Begin = m_vWriteHead[stream];
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        ipart1End = m_vWriteHead[stream] + amount;
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        ipart2Begin = m_size;
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        ipart2End = m_size;
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        m_vWriteHead[stream] += amount;
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    }
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    else
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    {
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        unsigned int remaining = (amount < m_size ? amount : m_size) - spaceLeft;
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        ipart1Begin = m_vWriteHead[stream];
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        ipart1End = m_size;
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        ipart2Begin = 0;
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        ipart2End = remaining;
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        m_vWriteHead[stream] = remaining;
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    }
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    m_vReadCount[stream] = amount < m_vReadCount[stream] ? m_vReadCount[stream] - amount : 0; // cannot be less than 0
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}
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unsigned int SampleMOFifo::getSizePolicy(unsigned int sampleRate)
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{
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    return (sampleRate/100)*64; // .64s
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}
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