mirror of
https://github.com/f4exb/sdrangel.git
synced 2024-12-25 04:03:30 -05:00
480 lines
12 KiB
C++
480 lines
12 KiB
C++
///////////////////////////////////////////////////////////////////////////////////
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// Copyright (C) 2012 maintech GmbH, Otto-Hahn-Str. 15, 97204 Hoechberg, Germany //
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// written by Christian Daniel //
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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 <string.h>
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#include <errno.h>
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#include "osmosdrinput.h"
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#include "osmosdrthread.h"
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#include "osmosdrgui.h"
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#include "util/simpleserializer.h"
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MESSAGE_CLASS_DEFINITION(OsmoSDRInput::MsgConfigureOsmoSDR, Message)
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OsmoSDRInput::Settings::Settings() :
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m_swapIQ(false),
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m_decimation(3),
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m_lnaGain(-50),
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m_mixerGain(40),
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m_mixerEnhancement(0),
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m_if1gain(-30),
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m_if2gain(0),
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m_if3gain(0),
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m_if4gain(0),
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m_if5gain(30),
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m_if6gain(30),
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m_opAmpI1(0),
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m_opAmpI2(0),
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m_opAmpQ1(0),
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m_opAmpQ2(0),
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m_dcOfsI(0),
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m_dcOfsQ(0)
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{
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}
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void OsmoSDRInput::Settings::resetToDefaults()
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{
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m_swapIQ = false;
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m_decimation = 3;
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m_lnaGain = -50;
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m_mixerGain = 40;
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m_mixerEnhancement = 0;
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m_if1gain = -30;
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m_if2gain = 0;
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m_if3gain = 0;
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m_if4gain = 0;
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m_if5gain = 30;
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m_if6gain = 30;
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m_opAmpI1 = 0;
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m_opAmpI2 = 0;
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m_opAmpQ1 = 0;
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m_opAmpQ2 = 0;
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m_dcOfsI = 0;
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m_dcOfsQ = 0;
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}
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QByteArray OsmoSDRInput::Settings::serialize() const
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{
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SimpleSerializer s(1);
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s.writeBool(1, m_swapIQ);
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s.writeS32(2, m_decimation);
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s.writeS32(3, m_lnaGain);
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s.writeS32(4, m_mixerGain);
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s.writeS32(5, m_mixerEnhancement);
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s.writeS32(6, m_if1gain);
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s.writeS32(7, m_if2gain);
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s.writeS32(8, m_if3gain);
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s.writeS32(9, m_if4gain);
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s.writeS32(10, m_if5gain);
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s.writeS32(11, m_if6gain);
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s.writeS32(12, m_opAmpI1);
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s.writeS32(13, m_opAmpI2);
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s.writeS32(14, m_opAmpQ1);
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s.writeS32(15, m_opAmpQ2);
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s.writeS32(16, m_dcOfsI);
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s.writeS32(17, m_dcOfsQ);
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return s.final();
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}
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bool OsmoSDRInput::Settings::deserialize(const QByteArray& data)
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{
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SimpleDeserializer d(data);
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if(!d.isValid()) {
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resetToDefaults();
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return false;
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}
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if(d.getVersion() == 1) {
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d.readBool(1, &m_swapIQ, false);
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d.readS32(2, &m_decimation, 3);
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d.readS32(3, &m_lnaGain, -50);
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d.readS32(4, &m_mixerGain, 40);
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d.readS32(5, &m_mixerEnhancement, 0);
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d.readS32(6, &m_if1gain, -30);
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d.readS32(7, &m_if2gain, 0);
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d.readS32(8, &m_if3gain, 0);
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d.readS32(9, &m_if4gain, 0);
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d.readS32(10, &m_if5gain, 30);
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d.readS32(11, &m_if6gain, 30);
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d.readS32(12, &m_opAmpI1, 0);
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d.readS32(13, &m_opAmpI2, 0);
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d.readS32(14, &m_opAmpQ1, 0);
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d.readS32(15, &m_opAmpQ2, 0);
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d.readS32(16, &m_dcOfsI, 0);
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d.readS32(17, &m_dcOfsQ, 0);
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return true;
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} else {
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resetToDefaults();
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return false;
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}
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}
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#if 0
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OsmoSDRInput::Settings::Settings() :
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{
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}
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QString OsmoSDRInput::Settings::serialize() const
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{
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return QString("osmosdr:a:%1:%2:%3:%4:%5:%6:%7:%8:%9:%10:%11:%12:%13:%14:%15:%16:%17:%18")
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.arg(centerFrequency)
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.arg(swapIQ ? 1 : 0)
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.arg(decimation)
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.arg(lnaGain)
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.arg(mixerGain)
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.arg(mixerEnhancement)
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.arg(if1gain)
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.arg(if2gain)
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.arg(if3gain)
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.arg(if4gain)
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.arg(if5gain)
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.arg(if6gain)
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.arg(opAmpI1)
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.arg(opAmpI2)
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.arg(opAmpQ1)
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.arg(opAmpQ2)
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.arg(dcOfsI)
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.arg(dcOfsQ);
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}
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bool OsmoSDRInput::Settings::deserialize(const QString& settings)
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{
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QStringList list = settings.split(":");
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if(list.size() < 2)
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return false;
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if(list[0] != "osmosdr")
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return false;
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if(list[1] == "a") {
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bool ok;
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if(list.size() != 20)
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return false;
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centerFrequency = list[2].toLongLong(&ok);
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if(!ok)
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return false;
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swapIQ = (list[3].toInt(&ok) != 0) ? true : false;
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if(!ok)
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return false;
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decimation = list[4].toInt(&ok);
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if(!ok)
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return false;
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lnaGain = list[5].toInt(&ok);
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if(!ok)
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return false;
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mixerGain = list[6].toInt(&ok);
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if(!ok)
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return false;
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mixerEnhancement = list[7].toInt(&ok);
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if(!ok)
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return false;
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if1gain = list[8].toInt(&ok);
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if(!ok)
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return false;
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if2gain = list[9].toInt(&ok);
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if(!ok)
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return false;
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if3gain = list[10].toInt(&ok);
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if(!ok)
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return false;
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if4gain = list[11].toInt(&ok);
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if(!ok)
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return false;
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if5gain = list[12].toInt(&ok);
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if(!ok)
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return false;
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if6gain = list[13].toInt(&ok);
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if(!ok)
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return false;
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opAmpI1 = list[14].toInt(&ok);
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if(!ok)
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return false;
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opAmpI2 = list[15].toInt(&ok);
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if(!ok)
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return false;
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opAmpQ1 = list[16].toInt(&ok);
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if(!ok)
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return false;
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opAmpQ2 = list[17].toInt(&ok);
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if(!ok)
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return false;
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dcOfsI = list[18].toInt(&ok);
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if(!ok)
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return false;
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dcOfsQ = list[19].toInt(&ok);
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if(!ok)
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return false;
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return true;
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} else {
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return false;
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}
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}
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MessageRegistrator OsmoSDRInput::MsgConfigureSourceOsmoSDR::ID("MsgConfigureSourceOsmoSDR");
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#endif
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OsmoSDRInput::OsmoSDRInput(MessageQueue* msgQueueToGUI) :
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SampleSource(msgQueueToGUI),
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m_settings(),
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m_dev(NULL),
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m_osmoSDRThread(NULL),
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m_deviceDescription()
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{
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}
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OsmoSDRInput::~OsmoSDRInput()
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{
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stopInput();
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}
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bool OsmoSDRInput::startInput(int device)
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{
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QMutexLocker mutexLocker(&m_mutex);
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if(m_dev != NULL)
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stopInput();
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char vendor[256];
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char product[256];
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char serial[256];
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int res;
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if(!m_sampleFifo.setSize(524288)) {
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qCritical("Could not allocate SampleFifo");
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return false;
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}
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if((res = osmosdr_open(&m_dev, device)) < 0) {
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qCritical("could not open OsmoSDR #%d: %s", device, strerror(errno));
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return false;
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}
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vendor[0] = '\0';
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product[0] = '\0';
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serial[0] = '\0';
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if((res = osmosdr_get_usb_strings(m_dev, vendor, product, serial)) < 0) {
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qCritical("error accessing USB device");
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goto failed;
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}
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qDebug("OsmoSDRInput open: %s %s, SN: %s", vendor, product, serial);
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m_deviceDescription = QString("%1 (SN %2)").arg(product).arg(serial);
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if((res = osmosdr_set_tuner_gain_mode(m_dev, 1)) < 0) {
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qCritical("error setting tuner gain mode");
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goto failed;
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}
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if((res = osmosdr_reset_buffer(m_dev)) < 0) {
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qCritical("could not reset USB EP buffers: %s", strerror(errno));
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goto failed;
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}
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if((m_osmoSDRThread = new OsmoSDRThread(m_dev, &m_sampleFifo)) == NULL) {
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qFatal("out of memory");
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goto failed;
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}
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m_osmoSDRThread->startWork();
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mutexLocker.unlock();
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applySettings(m_generalSettings, m_settings, true);
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qDebug("OsmoSDRInput: start");
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return true;
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failed:
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stopInput();
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return false;
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}
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void OsmoSDRInput::stopInput()
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{
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QMutexLocker mutexLocker(&m_mutex);
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if(m_osmoSDRThread != NULL) {
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m_osmoSDRThread->stopWork();
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delete m_osmoSDRThread;
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m_osmoSDRThread = NULL;
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}
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if(m_dev != NULL) {
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osmosdr_close(m_dev);
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m_dev = NULL;
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}
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m_deviceDescription.clear();
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}
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const QString& OsmoSDRInput::getDeviceDescription() const
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{
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return m_deviceDescription;
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}
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int OsmoSDRInput::getSampleRate() const
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{
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return 4000000 / (1 << m_settings.m_decimation);
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}
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quint64 OsmoSDRInput::getCenterFrequency() const
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{
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return m_generalSettings.m_centerFrequency;
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}
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bool OsmoSDRInput::handleMessage(Message* message)
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{
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if(MsgConfigureOsmoSDR::match(message)) {
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MsgConfigureOsmoSDR* conf = (MsgConfigureOsmoSDR*)message;
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if(!applySettings(conf->getGeneralSettings(), conf->getSettings(), false))
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qDebug("OsmoSDR config error");
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message->completed();
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return true;
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} else {
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return false;
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}
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/*
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if(cmd->sourceType() != DSPCmdConfigureSourceOsmoSDR::SourceType)
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return false;
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if(!applySettings(((DSPCmdConfigureSourceOsmoSDR*)cmd)->getSettings(), false))
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qDebug("OsmoSDR config error");
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cmd->completed();
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return true;
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*/
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return false;
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}
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bool OsmoSDRInput::applySettings(const GeneralSettings& generalSettings, const Settings& settings, bool force)
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{
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QMutexLocker mutexLocker(&m_mutex);
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if((m_generalSettings.m_centerFrequency != generalSettings.m_centerFrequency) || force) {
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m_generalSettings.m_centerFrequency = generalSettings.m_centerFrequency;
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if(m_dev != NULL) {
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if(osmosdr_set_center_freq(m_dev, m_generalSettings.m_centerFrequency) != 0)
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qDebug("osmosdr_set_center_freq(%lld) failed", m_generalSettings.m_centerFrequency);
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}
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}
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if((m_settings.m_swapIQ != settings.m_swapIQ) || force) {
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m_settings.m_swapIQ = settings.m_swapIQ;
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if(m_dev != NULL) {
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if(osmosdr_set_fpga_iq_swap(m_dev, m_settings.m_swapIQ ? 1 : 0) == 0)
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qDebug("osmosdr_set_fpga_iq_swap() failed");
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}
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}
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if((m_settings.m_decimation != settings.m_decimation) || force) {
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m_settings.m_decimation = settings.m_decimation;
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if(m_dev != NULL) {
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if(!osmosdr_set_fpga_decimation(m_dev, m_settings.m_decimation))
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qDebug("osmosdr_set_fpga_decimation() failed");
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}
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}
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if((m_settings.m_lnaGain != settings.m_lnaGain) || force) {
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m_settings.m_lnaGain = settings.m_lnaGain;
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if(m_dev != NULL) {
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if(!osmosdr_set_tuner_lna_gain(m_dev, m_settings.m_lnaGain))
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qDebug("osmosdr_set_tuner_lna_gain() failed");
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}
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}
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if((m_settings.m_mixerGain != settings.m_mixerGain) || force) {
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m_settings.m_mixerGain = settings.m_mixerGain;
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if(m_dev != NULL) {
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if(!osmosdr_set_tuner_mixer_gain(m_dev, m_settings.m_mixerGain))
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qDebug("osmosdr_set_tuner_mixer_gain() failed");
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}
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}
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if((m_settings.m_mixerEnhancement != settings.m_mixerEnhancement) || force) {
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m_settings.m_mixerEnhancement = settings.m_mixerEnhancement;
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if(m_dev != NULL) {
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if(!osmosdr_set_tuner_mixer_enh(m_dev, m_settings.m_mixerEnhancement))
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qDebug("osmosdr_set_tuner_mixer_enh() failed");
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}
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}
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if((m_settings.m_if1gain != settings.m_if1gain) || force) {
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m_settings.m_if1gain = settings.m_if1gain;
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if(m_dev != NULL) {
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if(!osmosdr_set_tuner_if_gain(m_dev, 1, m_settings.m_if1gain))
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qDebug("osmosdr_set_tuner_if_gain(1) failed");
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}
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}
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if((m_settings.m_if2gain != settings.m_if2gain) || force) {
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m_settings.m_if2gain = settings.m_if2gain;
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if(m_dev != NULL) {
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if(!osmosdr_set_tuner_if_gain(m_dev, 2, m_settings.m_if2gain))
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qDebug("osmosdr_set_tuner_if_gain(2) failed");
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}
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}
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if((m_settings.m_if3gain != settings.m_if3gain) || force) {
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m_settings.m_if3gain = settings.m_if3gain;
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if(m_dev != NULL) {
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if(!osmosdr_set_tuner_if_gain(m_dev, 3, m_settings.m_if3gain))
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qDebug("osmosdr_set_tuner_if_gain(3) failed");
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}
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}
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if((m_settings.m_if4gain != settings.m_if4gain) || force) {
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m_settings.m_if4gain = settings.m_if4gain;
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if(m_dev != NULL) {
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if(!osmosdr_set_tuner_if_gain(m_dev, 4, m_settings.m_if4gain))
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qDebug("osmosdr_set_tuner_if_gain(4) failed");
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}
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}
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if((m_settings.m_if5gain != settings.m_if5gain) || force) {
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m_settings.m_if5gain = settings.m_if5gain;
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if(m_dev != NULL) {
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if(!osmosdr_set_tuner_if_gain(m_dev, 5, m_settings.m_if5gain))
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qDebug("osmosdr_set_tuner_if_gain(5) failed");
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}
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}
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if((m_settings.m_if6gain != settings.m_if6gain) || force) {
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m_settings.m_if6gain = settings.m_if6gain;
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if(m_dev != NULL) {
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if(!osmosdr_set_tuner_if_gain(m_dev, 6, m_settings.m_if6gain))
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qDebug("osmosdr_set_tuner_if_gain(6) failed");
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}
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}
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if((m_settings.m_opAmpI1 != settings.m_opAmpI1) || (m_settings.m_opAmpI2 != settings.m_opAmpI2) ||
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(m_settings.m_opAmpQ1 != settings.m_opAmpQ1) || (m_settings.m_opAmpQ2 != settings.m_opAmpQ2) ||
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force) {
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m_settings.m_opAmpI1 = settings.m_opAmpI1;
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m_settings.m_opAmpI2 = settings.m_opAmpI2;
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m_settings.m_opAmpQ1 = settings.m_opAmpQ1;
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m_settings.m_opAmpQ2 = settings.m_opAmpQ2;
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if(m_dev != NULL) {
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if(!osmosdr_set_iq_amp(m_dev, m_settings.m_opAmpI1, m_settings.m_opAmpI2, m_settings.m_opAmpQ1, m_settings.m_opAmpQ2))
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qDebug("osmosdr_set_iq_amp(1) failed");
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}
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}
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if((m_settings.m_dcOfsI != settings.m_dcOfsI) || (m_settings.m_dcOfsQ != settings.m_dcOfsQ) ||
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force) {
|
|
m_settings.m_dcOfsI = settings.m_dcOfsI;
|
|
m_settings.m_dcOfsQ = settings.m_dcOfsQ;
|
|
if(m_dev != NULL) {
|
|
if(!osmosdr_set_tuner_dc_offset(m_dev, m_settings.m_dcOfsI, m_settings.m_dcOfsQ))
|
|
qDebug("osmosdr_set_tuner_dc_offset() failed");
|
|
}
|
|
}
|
|
|
|
return true;
|
|
}
|