///////////////////////////////////////////////////////////////////////////////////
// Copyright (C) 2016 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 //
// (at your option) any later version. //
// //
// 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 . //
///////////////////////////////////////////////////////////////////////////////////
#include
#include
#include
#include
#include
#include "dsp/samplesourcefifo.h"
#include "filesinkworker.h"
FileSinkWorker::FileSinkWorker(std::ofstream *samplesStream, SampleSourceFifo* sampleFifo, QObject* parent) :
QObject(parent),
m_running(false),
m_ofstream(samplesStream),
m_bufsize(0),
m_samplesChunkSize(0),
m_sampleFifo(sampleFifo),
m_samplesCount(0),
m_samplerate(0),
m_log2Interpolation(0),
m_throttlems(FILESINK_THROTTLE_MS),
m_maxThrottlems(50),
m_throttleToggle(false),
m_buf(nullptr)
{
assert(m_ofstream != nullptr);
}
FileSinkWorker::~FileSinkWorker()
{
if (m_running) {
stopWork();
}
if (m_buf) delete[] m_buf;
}
void FileSinkWorker::startWork()
{
qDebug() << "FileSinkWorker::startWork: ";
if (m_ofstream->is_open())
{
qDebug() << "FileSinkWorker::startWork: file stream open, starting...";
m_maxThrottlems = 0;
m_elapsedTimer.start();
m_running = true;
}
else
{
qDebug() << "FileSinkWorker::startWork: file stream closed, not starting.";
m_running = false;
}
}
void FileSinkWorker::stopWork()
{
m_running = false;
}
void FileSinkWorker::setSamplerate(int samplerate)
{
if (samplerate != m_samplerate)
{
qDebug() << "FileSinkWorker::setSamplerate:"
<< " new:" << samplerate
<< " old:" << m_samplerate;
bool wasRunning = false;
if (m_running)
{
stopWork();
wasRunning = true;
}
// resize sample FIFO
if (m_sampleFifo) {
m_sampleFifo->resize(SampleSourceFifo::getSizePolicy(samplerate)); // 1s buffer
}
// resize output buffer
if (m_buf) delete[] m_buf;
m_buf = new int16_t[samplerate*(1< 6))
{
return;
}
if (log2Interpolation != m_log2Interpolation)
{
qDebug() << "FileSinkWorker::setLog2Interpolation:"
<< " new:" << log2Interpolation
<< " old:" << m_log2Interpolation;
bool wasRunning = false;
if (m_running)
{
stopWork();
wasRunning = true;
}
// resize output buffer
if (m_buf) delete[] m_buf;
m_buf = new int16_t[m_samplerate*(1<getData();
m_sampleFifo->read(m_samplesChunkSize, iPart1Begin, iPart1End, iPart2Begin, iPart2End);
m_samplesCount += m_samplesChunkSize;
if (iPart1Begin != iPart1End) {
callbackPart(data, iPart1Begin, iPart1End);
}
if (iPart2Begin != iPart2End) {
callbackPart(data, iPart2Begin, iPart2End);
}
}
}
void FileSinkWorker::callbackPart(SampleVector& data, unsigned int iBegin, unsigned int iEnd)
{
SampleVector::iterator beginRead = data.begin() + iBegin;
unsigned int chunkSize = iEnd - iBegin;
if (m_log2Interpolation == 0)
{
m_ofstream->write(reinterpret_cast(&(*beginRead)), chunkSize*sizeof(Sample));
}
else
{
switch (m_log2Interpolation)
{
case 1:
m_interpolators.interpolate2_cen(&beginRead, m_buf, chunkSize*(1<write(reinterpret_cast(m_buf), chunkSize*(1<