mirror of
https://github.com/f4exb/sdrangel.git
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680 lines
19 KiB
C++
680 lines
19 KiB
C++
///////////////////////////////////////////////////////////////////////////////////
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// Copyright (C) 2015 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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// //
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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 <stdio.h>
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#include <errno.h>
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#include "dsp/samplefifo.h"
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#include "bladerfthread.h"
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BladerfThread::BladerfThread(struct bladerf* dev, SampleFifo* sampleFifo, QObject* parent) :
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QThread(parent),
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m_running(false),
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m_dev(dev),
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m_convertBuffer(BLADERF_BLOCKSIZE),
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m_sampleFifo(sampleFifo),
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m_samplerate(3072000),
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m_log2Decim(0),
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m_fcPos(0)
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{
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}
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BladerfThread::~BladerfThread()
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{
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stopWork();
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}
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void BladerfThread::startWork()
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{
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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 BladerfThread::stopWork()
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{
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m_running = false;
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wait();
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}
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void BladerfThread::setSamplerate(int samplerate)
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{
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m_samplerate = samplerate;
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}
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void BladerfThread::setLog2Decimation(unsigned int log2_decim)
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{
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m_log2Decim = log2_decim;
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}
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void BladerfThread::setFcPos(int fcPos)
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{
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m_fcPos = fcPos;
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}
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void BladerfThread::run()
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{
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int res;
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m_running = true;
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m_startWaiter.wakeAll();
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while(m_running) {
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if((res = bladerf_sync_rx(m_dev, m_buf, BLADERF_BLOCKSIZE, NULL, 10000)) < 0) {
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qCritical("BladerfThread: sync error: %s", strerror(errno));
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break;
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}
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callback(m_buf, 2 * BLADERF_BLOCKSIZE);
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}
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m_running = false;
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}
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void BladerfThread::decimate1(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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qint16 xreal, yimag;
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for (int pos = 0; pos < len; pos += 2) {
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xreal = buf[pos+0];
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yimag = buf[pos+1];
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Sample s( xreal * 16, yimag * 16 ); // shift by 4 bit positions (signed)
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**it = s;
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(*it)++;
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}
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}
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void BladerfThread::decimate2_u(SampleVector::iterator* it, const quint16* buf, qint32 len)
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{
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qint16 xreal, yimag;
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for (int pos = 0; pos < len - 7; pos += 8) {
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xreal = buf[pos+0] - buf[pos+3];
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yimag = buf[pos+1] + buf[pos+2] - 255;
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Sample s( xreal << 3, yimag << 3 );
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**it = s;
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(*it)++;
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xreal = buf[pos+7] - buf[pos+4];
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yimag = 255 - buf[pos+5] - buf[pos+6];
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Sample t( xreal << 3, yimag << 3 );
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**it = t;
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(*it)++;
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}
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}
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void BladerfThread::decimate2(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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qint16 xreal, yimag;
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for (int pos = 0; pos < len - 7; pos += 8) {
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xreal = buf[pos+0] - buf[pos+3];
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yimag = buf[pos+1] + buf[pos+2];
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Sample s( xreal << 3, yimag << 3 );
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**it = s;
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(*it)++;
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xreal = buf[pos+7] - buf[pos+4];
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yimag = - buf[pos+5] - buf[pos+6];
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Sample t( xreal << 3, yimag << 3 );
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**it = t;
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(*it)++;
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}
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}
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void BladerfThread::decimate2_sup(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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qint16 xreal, yimag;
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for (int pos = 0; pos < len - 7; pos += 8) {
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xreal = buf[pos+1] - buf[pos+2];
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yimag = - buf[pos+0] - buf[pos+3];
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Sample s( xreal << 3, yimag << 3 );
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**it = s;
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(*it)++;
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xreal = buf[pos+6] - buf[pos+5];
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yimag = buf[pos+4] + buf[pos+7];
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Sample t( xreal << 3, yimag << 3 );
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**it = t;
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(*it)++;
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}
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}
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/*
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void BladerfThread::decimate2_cen(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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for (int pos = 0; pos < len - 1; pos += 2) {
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Sample s(buf[pos+0] << 3, buf[pos+1] << 3);
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if (m_decimator2.workDecimateCenter(&s)) {
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**it = s;
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(*it)++;
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}
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}
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}
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void BladerfThread::decimate4_cen(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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for (int pos = 0; pos < len - 1; pos += 2) {
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Sample s(buf[pos+0] << 4, buf[pos+1] << 4);
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if (m_decimator2.workDecimateCenter(&s)) {
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if (m_decimator4.workDecimateCenter(&s)) {
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**it = s;
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(*it)++;
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}
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}
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}
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}
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void BladerfThread::decimate8_cen(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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for (int pos = 0; pos < len - 1; pos += 2) {
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Sample s(buf[pos+0] << 4, buf[pos+1] << 4);
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if (m_decimator2.workDecimateCenter(&s)) {
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if (m_decimator4.workDecimateCenter(&s)) {
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if (m_decimator8.workDecimateCenter(&s)) {
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**it = s;
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(*it)++;
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}
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}
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}
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}
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}
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void BladerfThread::decimate16_cen(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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for (int pos = 0; pos < len - 11; pos += 2) {
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Sample s(buf[pos+0] << 4, buf[pos+1] << 4);
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if (m_decimator2.workDecimateCenter(&s)) {
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if (m_decimator4.workDecimateCenter(&s)) {
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if (m_decimator8.workDecimateCenter(&s)) {
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if (m_decimator16.workDecimateCenter(&s)) {
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**it = s;
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(*it)++;
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}
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}
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}
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}
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}
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}
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void BladerfThread::decimate32_cen(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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for (int pos = 0; pos < len - 11; pos += 2) {
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Sample s(buf[pos+0] << 4, buf[pos+1] << 4);
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if (m_decimator2.workDecimateCenter(&s)) {
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if (m_decimator4.workDecimateCenter(&s)) {
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if (m_decimator8.workDecimateCenter(&s)) {
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if (m_decimator16.workDecimateCenter(&s)) {
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if (m_decimator32.workDecimateCenter(&s)) {
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**it = s;
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(*it)++;
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}
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}
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}
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}
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}
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}
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}
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*/
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void BladerfThread::decimate2_cen(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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for (int pos = 0; pos < len - 3; pos += 4) {
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Sample s1(buf[pos+0] << 3, buf[pos+1] << 3);
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Sample s2(buf[pos+2] << 3, buf[pos+3] << 3);
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m_decimator2.myDecimate(&s1, &s2);
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**it = s2;
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(*it)++;
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}
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}
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void BladerfThread::decimate4_cen(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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for (int pos = 0; pos < len - 7; pos += 8) {
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Sample s1(buf[pos+0] << 4, buf[pos+1] << 4);
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Sample s2(buf[pos+2] << 4, buf[pos+3] << 4);
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Sample s3(buf[pos+4] << 4, buf[pos+5] << 4);
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Sample s4(buf[pos+6] << 4, buf[pos+7] << 4);
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m_decimator2.myDecimate(&s1, &s2);
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m_decimator2.myDecimate(&s3, &s4);
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m_decimator4.myDecimate(&s2, &s4);
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**it = s4;
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(*it)++;
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}
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}
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void BladerfThread::decimate8_cen(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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for (int pos = 0; pos < len - 15; pos += 16) {
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Sample s1(buf[pos+0] << 4, buf[pos+1] << 4);
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Sample s2(buf[pos+2] << 4, buf[pos+3] << 4);
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Sample s3(buf[pos+4] << 4, buf[pos+5] << 4);
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Sample s4(buf[pos+6] << 4, buf[pos+7] << 4);
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Sample s5(buf[pos+8] << 4, buf[pos+9] << 4);
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Sample s6(buf[pos+10] << 4, buf[pos+11] << 4);
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Sample s7(buf[pos+12] << 4, buf[pos+13] << 4);
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Sample s8(buf[pos+14] << 4, buf[pos+15] << 4);
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m_decimator2.myDecimate(&s1, &s2);
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m_decimator2.myDecimate(&s3, &s4);
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m_decimator2.myDecimate(&s5, &s6);
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m_decimator2.myDecimate(&s7, &s8);
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m_decimator4.myDecimate(&s2, &s4);
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m_decimator4.myDecimate(&s6, &s8);
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m_decimator8.myDecimate(&s4, &s8);
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**it = s8;
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(*it)++;
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}
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}
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void BladerfThread::decimate16_cen(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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for (int pos = 0; pos < len - 31; pos += 32) {
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Sample s1(buf[pos+0] << 4, buf[pos+1] << 4);
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Sample s2(buf[pos+2] << 4, buf[pos+3] << 4);
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Sample s3(buf[pos+4] << 4, buf[pos+5] << 4);
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Sample s4(buf[pos+6] << 4, buf[pos+7] << 4);
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Sample s5(buf[pos+8] << 4, buf[pos+9] << 4);
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Sample s6(buf[pos+10] << 4, buf[pos+11] << 4);
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Sample s7(buf[pos+12] << 4, buf[pos+13] << 4);
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Sample s8(buf[pos+14] << 4, buf[pos+15] << 4);
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Sample s9(buf[pos+16] << 4, buf[pos+17] << 4);
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Sample s10(buf[pos+18] << 4, buf[pos+19] << 4);
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Sample s11(buf[pos+20] << 4, buf[pos+21] << 4);
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Sample s12(buf[pos+22] << 4, buf[pos+23] << 4);
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Sample s13(buf[pos+24] << 4, buf[pos+25] << 4);
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Sample s14(buf[pos+26] << 4, buf[pos+27] << 4);
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Sample s15(buf[pos+28] << 4, buf[pos+29] << 4);
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Sample s16(buf[pos+30] << 4, buf[pos+31] << 4);
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m_decimator2.myDecimate(&s1, &s2);
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m_decimator2.myDecimate(&s3, &s4);
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m_decimator2.myDecimate(&s5, &s6);
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m_decimator2.myDecimate(&s7, &s8);
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m_decimator2.myDecimate(&s9, &s10);
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m_decimator2.myDecimate(&s11, &s12);
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m_decimator2.myDecimate(&s13, &s14);
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m_decimator2.myDecimate(&s15, &s16);
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m_decimator4.myDecimate(&s2, &s4);
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m_decimator4.myDecimate(&s6, &s8);
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m_decimator4.myDecimate(&s10, &s12);
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m_decimator4.myDecimate(&s14, &s16);
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m_decimator8.myDecimate(&s4, &s8);
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m_decimator8.myDecimate(&s12, &s16);
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m_decimator16.myDecimate(&s8, &s16);
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**it = s16;
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(*it)++;
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}
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}
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void BladerfThread::decimate32_cen(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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for (int pos = 0; pos < len - 63; pos += 64) {
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Sample s1(buf[pos+0] << 4, buf[pos+1] << 4);
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Sample s2(buf[pos+2] << 4, buf[pos+3] << 4);
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Sample s3(buf[pos+4] << 4, buf[pos+5] << 4);
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Sample s4(buf[pos+6] << 4, buf[pos+7] << 4);
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Sample s5(buf[pos+8] << 4, buf[pos+9] << 4);
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Sample s6(buf[pos+10] << 4, buf[pos+11] << 4);
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Sample s7(buf[pos+12] << 4, buf[pos+13] << 4);
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Sample s8(buf[pos+14] << 4, buf[pos+15] << 4);
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Sample s9(buf[pos+16] << 4, buf[pos+17] << 4);
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Sample s10(buf[pos+18] << 4, buf[pos+19] << 4);
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Sample s11(buf[pos+20] << 4, buf[pos+21] << 4);
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Sample s12(buf[pos+22] << 4, buf[pos+23] << 4);
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Sample s13(buf[pos+24] << 4, buf[pos+25] << 4);
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Sample s14(buf[pos+26] << 4, buf[pos+27] << 4);
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Sample s15(buf[pos+28] << 4, buf[pos+29] << 4);
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Sample s16(buf[pos+30] << 4, buf[pos+31] << 4);
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Sample s17(buf[pos+32] << 4, buf[pos+33] << 4);
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Sample s18(buf[pos+34] << 4, buf[pos+35] << 4);
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Sample s19(buf[pos+36] << 4, buf[pos+37] << 4);
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Sample s20(buf[pos+38] << 4, buf[pos+39] << 4);
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Sample s21(buf[pos+40] << 4, buf[pos+41] << 4);
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Sample s22(buf[pos+42] << 4, buf[pos+43] << 4);
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Sample s23(buf[pos+44] << 4, buf[pos+45] << 4);
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Sample s24(buf[pos+46] << 4, buf[pos+47] << 4);
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Sample s25(buf[pos+48] << 4, buf[pos+49] << 4);
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Sample s26(buf[pos+50] << 4, buf[pos+51] << 4);
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Sample s27(buf[pos+52] << 4, buf[pos+53] << 4);
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Sample s28(buf[pos+54] << 4, buf[pos+55] << 4);
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Sample s29(buf[pos+56] << 4, buf[pos+57] << 4);
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Sample s30(buf[pos+58] << 4, buf[pos+59] << 4);
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Sample s31(buf[pos+60] << 4, buf[pos+61] << 4);
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Sample s32(buf[pos+62] << 4, buf[pos+63] << 4);
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m_decimator2.myDecimate(&s1, &s2);
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m_decimator2.myDecimate(&s3, &s4);
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m_decimator2.myDecimate(&s5, &s6);
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m_decimator2.myDecimate(&s7, &s8);
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m_decimator2.myDecimate(&s9, &s10);
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m_decimator2.myDecimate(&s11, &s12);
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m_decimator2.myDecimate(&s13, &s14);
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m_decimator2.myDecimate(&s15, &s16);
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m_decimator2.myDecimate(&s17, &s18);
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m_decimator2.myDecimate(&s19, &s20);
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m_decimator2.myDecimate(&s21, &s22);
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m_decimator2.myDecimate(&s23, &s24);
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m_decimator2.myDecimate(&s25, &s26);
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m_decimator2.myDecimate(&s27, &s28);
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m_decimator2.myDecimate(&s29, &s30);
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m_decimator2.myDecimate(&s31, &s32);
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m_decimator4.myDecimate(&s2, &s4);
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m_decimator4.myDecimate(&s6, &s8);
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m_decimator4.myDecimate(&s10, &s12);
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m_decimator4.myDecimate(&s14, &s16);
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m_decimator4.myDecimate(&s18, &s20);
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m_decimator4.myDecimate(&s22, &s24);
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m_decimator4.myDecimate(&s26, &s28);
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m_decimator4.myDecimate(&s30, &s32);
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m_decimator8.myDecimate(&s4, &s8);
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m_decimator8.myDecimate(&s12, &s16);
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m_decimator8.myDecimate(&s20, &s24);
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m_decimator8.myDecimate(&s28, &s32);
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m_decimator16.myDecimate(&s8, &s16);
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m_decimator16.myDecimate(&s24, &s32);
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m_decimator32.myDecimate(&s16, &s32);
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**it = s32;
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(*it)++;
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}
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}
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void BladerfThread::decimate4(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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qint16 xreal, yimag;
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for (int pos = 0; pos < len - 7; pos += 8) {
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xreal = buf[pos+0] - buf[pos+3] + buf[pos+7] - buf[pos+4];
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yimag = buf[pos+1] - buf[pos+5] + buf[pos+2] - buf[pos+6];
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Sample s( xreal << 2, yimag << 2 ); // was shift 3
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**it = s;
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(*it)++;
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}
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}
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void BladerfThread::decimate4_sup(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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// Sup (USB):
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// x y x y x y x y / x -> 1,-2,-5,6 / y -> -0,-3,4,7
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// [ rotate: 1, 0, -2, 3, -5, -4, 6, -7]
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// Inf (LSB):
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// x y x y x y x y / x -> 0,-3,-4,7 / y -> 1,2,-5,-6
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// [ rotate: 0, 1, -3, 2, -4, -5, 7, -6]
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qint16 xreal, yimag;
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for (int pos = 0; pos < len - 7; pos += 8) {
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xreal = buf[pos+1] - buf[pos+2] - buf[pos+5] + buf[pos+6];
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yimag = - buf[pos+0] - buf[pos+3] + buf[pos+4] + buf[pos+7];
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//xreal = buf[pos+0] - buf[pos+3] - buf[pos+4] + buf[pos+7];
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//yimag = buf[pos+1] + buf[pos+2] - buf[pos+5] - buf[pos+6];
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Sample s( xreal << 2, yimag << 2 ); // was shift 3
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**it = s;
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(*it)++;
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}
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}
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void BladerfThread::decimate8(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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qint16 xreal, yimag;
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for (int pos = 0; pos < len - 15; pos += 8) {
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xreal = buf[pos+0] - buf[pos+3] + buf[pos+7] - buf[pos+4];
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yimag = buf[pos+1] - buf[pos+5] + buf[pos+2] - buf[pos+6];
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Sample s1( xreal << 2, yimag << 2 ); // was shift 3
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pos += 8;
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xreal = buf[pos+0] - buf[pos+3] + buf[pos+7] - buf[pos+4];
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yimag = buf[pos+1] - buf[pos+5] + buf[pos+2] - buf[pos+6];
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Sample s2( xreal << 2, yimag << 2 ); // was shift 3
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m_decimator2.myDecimate(&s1, &s2);
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**it = s2;
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(*it)++;
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}
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}
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void BladerfThread::decimate8_sup(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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qint16 xreal, yimag;
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for (int pos = 0; pos < len - 15; pos += 8) {
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xreal = buf[pos+1] - buf[pos+2] - buf[pos+5] + buf[pos+6];
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yimag = - buf[pos+0] - buf[pos+3] + buf[pos+4] + buf[pos+7];
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Sample s1( xreal << 2, yimag << 2 ); // was shift 3
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pos += 8;
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xreal = buf[pos+1] - buf[pos+2] - buf[pos+5] + buf[pos+6];
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yimag = - buf[pos+0] - buf[pos+3] + buf[pos+4] + buf[pos+7];
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Sample s2( xreal << 2, yimag << 2 ); // was shift 3
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m_decimator2.myDecimate(&s1, &s2);
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**it = s2;
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(*it)++;
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}
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}
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void BladerfThread::decimate16(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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// Offset tuning: 4x downsample and rotate, then
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// downsample 4x more. [ rotate: 0, 1, -3, 2, -4, -5, 7, -6]
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qint16 xreal[4], yimag[4];
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for (int pos = 0; pos < len - 31; ) {
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for (int i = 0; i < 4; i++) {
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xreal[i] = (buf[pos+0] - buf[pos+3] + buf[pos+7] - buf[pos+4]) << 2; // was shift 4
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yimag[i] = (buf[pos+1] - buf[pos+5] + buf[pos+2] - buf[pos+6]) << 2; // was shift 4
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pos += 8;
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}
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Sample s1( xreal[0], yimag[0] );
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Sample s2( xreal[1], yimag[1] );
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Sample s3( xreal[2], yimag[2] );
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Sample s4( xreal[3], yimag[3] );
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m_decimator2.myDecimate(&s1, &s2);
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m_decimator2.myDecimate(&s3, &s4);
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m_decimator4.myDecimate(&s2, &s4);
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**it = s4;
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(*it)++;
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}
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}
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void BladerfThread::decimate16_sup(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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// Offset tuning: 4x downsample and rotate, then
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// downsample 4x more. [ rotate: 1, 0, -2, 3, -5, -4, 6, -7]
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qint16 xreal[4], yimag[4];
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for (int pos = 0; pos < len - 31; ) {
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for (int i = 0; i < 4; i++) {
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xreal[i] = (buf[pos+1] - buf[pos+2] - buf[pos+5] + buf[pos+6]) << 2; // was shift 4
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yimag[i] = (buf[pos+4] + buf[pos+7] - buf[pos+0] - buf[pos+3]) << 2; // was shift 4
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pos += 8;
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}
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Sample s1( xreal[0], yimag[0] );
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Sample s2( xreal[1], yimag[1] );
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Sample s3( xreal[2], yimag[2] );
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Sample s4( xreal[3], yimag[3] );
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m_decimator2.myDecimate(&s1, &s2);
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m_decimator2.myDecimate(&s3, &s4);
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m_decimator4.myDecimate(&s2, &s4);
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**it = s4;
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(*it)++;
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}
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}
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void BladerfThread::decimate32(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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qint16 xreal[8], yimag[8];
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for (int pos = 0; pos < len - 63; ) {
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for (int i = 0; i < 8; i++) {
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xreal[i] = (buf[pos+0] - buf[pos+3] + buf[pos+7] - buf[pos+4]) << 2;
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yimag[i] = (buf[pos+1] - buf[pos+5] + buf[pos+2] - buf[pos+6]) << 2;
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pos += 8;
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}
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Sample s1( xreal[0], yimag[0] );
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Sample s2( xreal[1], yimag[1] );
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Sample s3( xreal[2], yimag[2] );
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Sample s4( xreal[3], yimag[3] );
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Sample s5( xreal[4], yimag[4] );
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Sample s6( xreal[5], yimag[5] );
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Sample s7( xreal[6], yimag[6] );
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Sample s8( xreal[7], yimag[7] );
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m_decimator2.myDecimate(&s1, &s2);
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m_decimator2.myDecimate(&s3, &s4);
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m_decimator2.myDecimate(&s5, &s6);
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m_decimator2.myDecimate(&s7, &s8);
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m_decimator4.myDecimate(&s2, &s4);
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m_decimator4.myDecimate(&s6, &s8);
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m_decimator8.myDecimate(&s4, &s8);
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**it = s8;
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(*it)++;
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}
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}
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void BladerfThread::decimate32_sup(SampleVector::iterator* it, const qint16* buf, qint32 len)
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{
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qint16 xreal[8], yimag[8];
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for (int pos = 0; pos < len - 63; ) {
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for (int i = 0; i < 8; i++) {
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xreal[i] = (buf[pos+1] - buf[pos+2] - buf[pos+5] + buf[pos+6]) << 2;
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yimag[i] = (buf[pos+4] + buf[pos+7] - buf[pos+0] - buf[pos+3]) << 2;
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pos += 8;
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}
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Sample s1( xreal[0], yimag[0] );
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Sample s2( xreal[1], yimag[1] );
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Sample s3( xreal[2], yimag[2] );
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Sample s4( xreal[3], yimag[3] );
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Sample s5( xreal[4], yimag[4] );
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Sample s6( xreal[5], yimag[5] );
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Sample s7( xreal[6], yimag[6] );
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Sample s8( xreal[7], yimag[7] );
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m_decimator2.myDecimate(&s1, &s2);
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m_decimator2.myDecimate(&s3, &s4);
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m_decimator2.myDecimate(&s5, &s6);
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m_decimator2.myDecimate(&s7, &s8);
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m_decimator4.myDecimate(&s2, &s4);
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m_decimator4.myDecimate(&s6, &s8);
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m_decimator8.myDecimate(&s4, &s8);
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**it = s8;
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(*it)++;
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}
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}
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// Decimate according to specified log2 (ex: log2=4 => decim=16)
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void BladerfThread::callback(const qint16* buf, qint32 len)
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{
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SampleVector::iterator it = m_convertBuffer.begin();
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if (m_log2Decim == 0)
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{
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decimate1(&it, buf, len);
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}
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else
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{
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if (m_fcPos == 0) // Infra
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{
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switch (m_log2Decim)
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{
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case 1:
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decimate2(&it, buf, len);
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break;
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case 2:
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decimate4(&it, buf, len);
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break;
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case 3:
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decimate8(&it, buf, len);
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break;
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case 4:
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decimate16(&it, buf, len);
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break;
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case 5:
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decimate32(&it, 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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else if (m_fcPos == 1) // Supra
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{
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switch (m_log2Decim)
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{
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case 1:
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decimate2_sup(&it, buf, len);
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break;
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case 2:
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decimate4_sup(&it, buf, len);
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break;
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case 3:
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decimate8_sup(&it, buf, len);
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break;
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case 4:
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decimate16_sup(&it, buf, len);
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break;
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case 5:
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decimate32_sup(&it, 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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else if (m_fcPos == 2) // Center
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{
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switch (m_log2Decim)
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{
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case 1:
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decimate2_cen(&it, buf, len);
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break;
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case 2:
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decimate4_cen(&it, buf, len);
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break;
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case 3:
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decimate8_cen(&it, buf, len);
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break;
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case 4:
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decimate16_cen(&it, buf, len);
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break;
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case 5:
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decimate32_cen(&it, 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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m_sampleFifo->write(m_convertBuffer.begin(), it);
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}
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