mirror of
https://github.com/f4exb/sdrangel.git
synced 2024-11-26 17:58:43 -05:00
568 lines
19 KiB
C++
568 lines
19 KiB
C++
///////////////////////////////////////////////////////////////////////////////////
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// Copyright (C) 2017 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 <stdio.h>
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#include <QDebug>
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#include <QMessageBox>
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#include <QFileDialog>
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#include "dsp/dspengine.h"
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#include "dsp/dspcommands.h"
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#include "gui/glspectrum.h"
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#include "gui/crightclickenabler.h"
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#include "gui/basicdevicesettingsdialog.h"
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#include "device/deviceapi.h"
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#include "device/deviceuiset.h"
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#include "plutosdr/deviceplutosdr.h"
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#include "plutosdrinput.h"
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#include "ui_plutosdrinputgui.h"
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#include "plutosdrinputgui.h"
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PlutoSDRInputGui::PlutoSDRInputGui(DeviceUISet *deviceUISet, QWidget* parent) :
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DeviceGUI(parent),
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ui(new Ui::PlutoSDRInputGUI),
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m_deviceUISet(deviceUISet),
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m_settings(),
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m_sampleRateMode(true),
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m_forceSettings(true),
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m_sampleSource(NULL),
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m_sampleRate(0),
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m_deviceCenterFrequency(0),
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m_lastEngineState(DeviceAPI::StNotStarted),
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m_doApplySettings(true),
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m_statusCounter(0)
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{
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m_sampleSource = (PlutoSDRInput*) m_deviceUISet->m_deviceAPI->getSampleSource();
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ui->setupUi(this);
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ui->centerFrequency->setColorMapper(ColorMapper(ColorMapper::GrayGold));
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updateFrequencyLimits();
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ui->sampleRate->setColorMapper(ColorMapper(ColorMapper::GrayGreenYellow));
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ui->sampleRate->setValueRange(8, DevicePlutoSDR::srLowLimitFreq, DevicePlutoSDR::srHighLimitFreq);
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ui->lpf->setColorMapper(ColorMapper(ColorMapper::GrayYellow));
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quint32 minLimit, maxLimit;
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((PlutoSDRInput *) m_sampleSource)->getbbLPRange(minLimit, maxLimit);
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ui->lpf->setValueRange(5, minLimit/1000, maxLimit/1000);
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ui->lpFIR->setColorMapper(ColorMapper(ColorMapper::GrayYellow));
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ui->lpFIR->setValueRange(5, 1U, 56000U); // will be dynamically recalculated
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ui->swDecimLabel->setText(QString::fromUtf8("S\u2193"));
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ui->lpFIRDecimationLabel->setText(QString::fromUtf8("\u2193"));
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CRightClickEnabler *startStopRightClickEnabler = new CRightClickEnabler(ui->startStop);
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connect(startStopRightClickEnabler, SIGNAL(rightClick(const QPoint &)), this, SLOT(openDeviceSettingsDialog(const QPoint &)));
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blockApplySettings(true);
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displaySettings();
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blockApplySettings(false);
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connect(&m_updateTimer, SIGNAL(timeout()), this, SLOT(updateHardware()));
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connect(&m_statusTimer, SIGNAL(timeout()), this, SLOT(updateStatus()));
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m_statusTimer.start(500);
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connect(&m_inputMessageQueue, SIGNAL(messageEnqueued()), this, SLOT(handleInputMessages()), Qt::QueuedConnection);
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m_sampleSource->setMessageQueueToGUI(&m_inputMessageQueue);
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}
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PlutoSDRInputGui::~PlutoSDRInputGui()
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{
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delete ui;
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}
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void PlutoSDRInputGui::destroy()
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{
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delete this;
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}
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void PlutoSDRInputGui::resetToDefaults()
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{
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}
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QByteArray PlutoSDRInputGui::serialize() const
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{
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return m_settings.serialize();
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}
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bool PlutoSDRInputGui::deserialize(const QByteArray& data)
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{
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if(m_settings.deserialize(data))
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{
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blockApplySettings(true);
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displaySettings();
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blockApplySettings(false);
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sendSettings(true);
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return true;
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}
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else
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{
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resetToDefaults();
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return false;
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}
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}
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bool PlutoSDRInputGui::handleMessage(const Message& message)
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{
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if (PlutoSDRInput::MsgConfigurePlutoSDR::match(message))
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{
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const PlutoSDRInput::MsgConfigurePlutoSDR& cfg = (PlutoSDRInput::MsgConfigurePlutoSDR&) message;
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m_settings = cfg.getSettings();
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blockApplySettings(true);
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displaySettings();
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blockApplySettings(false);
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return true;
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}
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else if (PlutoSDRInput::MsgStartStop::match(message))
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{
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PlutoSDRInput::MsgStartStop& notif = (PlutoSDRInput::MsgStartStop&) message;
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blockApplySettings(true);
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ui->startStop->setChecked(notif.getStartStop());
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blockApplySettings(false);
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return true;
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}
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else if (DevicePlutoSDRShared::MsgCrossReportToBuddy::match(message)) // message from buddy
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{
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DevicePlutoSDRShared::MsgCrossReportToBuddy& conf = (DevicePlutoSDRShared::MsgCrossReportToBuddy&) message;
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m_settings.m_devSampleRate = conf.getDevSampleRate();
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m_settings.m_lpfFIRlog2Decim = conf.getLpfFiRlog2IntDec();
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m_settings.m_lpfFIRBW = conf.getLpfFirbw();
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m_settings.m_LOppmTenths = conf.getLoPPMTenths();
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m_settings.m_lpfFIREnable = conf.isLpfFirEnable();
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blockApplySettings(true);
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displaySettings();
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blockApplySettings(false);
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return true;
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}
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else
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{
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return false;
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}
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}
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void PlutoSDRInputGui::on_startStop_toggled(bool checked)
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{
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if (m_doApplySettings)
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{
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PlutoSDRInput::MsgStartStop *message = PlutoSDRInput::MsgStartStop::create(checked);
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m_sampleSource->getInputMessageQueue()->push(message);
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}
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}
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void PlutoSDRInputGui::on_centerFrequency_changed(quint64 value)
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{
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m_settings.m_centerFrequency = value * 1000;
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sendSettings();
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}
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void PlutoSDRInputGui::on_loPPM_valueChanged(int value)
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{
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ui->loPPMText->setText(QString("%1").arg(QString::number(value/10.0, 'f', 1)));
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m_settings.m_LOppmTenths = value;
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sendSettings();
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}
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void PlutoSDRInputGui::on_dcOffset_toggled(bool checked)
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{
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m_settings.m_dcBlock = checked;
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sendSettings();
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}
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void PlutoSDRInputGui::on_iqImbalance_toggled(bool checked)
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{
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m_settings.m_iqCorrection = checked;
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sendSettings();
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}
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void PlutoSDRInputGui::on_rfDCOffset_toggled(bool checked)
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{
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m_settings.m_hwRFDCBlock = checked;
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sendSettings();
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}
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void PlutoSDRInputGui::on_bbDCOffset_toggled(bool checked)
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{
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m_settings.m_hwBBDCBlock = checked;
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sendSettings();
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}
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void PlutoSDRInputGui::on_hwIQImbalance_toggled(bool checked)
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{
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m_settings.m_hwIQCorrection = checked;
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sendSettings();
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}
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void PlutoSDRInputGui::on_swDecim_currentIndexChanged(int index)
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{
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m_settings.m_log2Decim = index > 6 ? 6 : index;
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displaySampleRate();
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m_settings.m_devSampleRate = ui->sampleRate->getValueNew();
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if (!m_sampleRateMode) {
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m_settings.m_devSampleRate <<= m_settings.m_log2Decim;
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}
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sendSettings();
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}
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void PlutoSDRInputGui::on_fcPos_currentIndexChanged(int index)
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{
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m_settings.m_fcPos = (PlutoSDRInputSettings::fcPos_t) (index < (int) PlutoSDRInputSettings::FC_POS_END ? index : PlutoSDRInputSettings::FC_POS_CENTER);
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displayFcTooltip();
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sendSettings();
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}
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void PlutoSDRInputGui::on_sampleRate_changed(quint64 value)
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{
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m_settings.m_devSampleRate = value;
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if (!m_sampleRateMode) {
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m_settings.m_devSampleRate <<= m_settings.m_log2Decim;
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}
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displayFcTooltip();
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sendSettings();
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}
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void PlutoSDRInputGui::on_lpf_changed(quint64 value)
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{
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m_settings.m_lpfBW = value * 1000;
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sendSettings();
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}
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void PlutoSDRInputGui::on_lpFIREnable_toggled(bool checked)
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{
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m_settings.m_lpfFIREnable = checked;
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ui->lpFIRDecimation->setEnabled(checked);
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ui->lpFIRGain->setEnabled(checked);
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sendSettings();
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}
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void PlutoSDRInputGui::on_lpFIR_changed(quint64 value)
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{
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m_settings.m_lpfFIRBW = value * 1000;
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sendSettings();
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}
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void PlutoSDRInputGui::on_lpFIRDecimation_currentIndexChanged(int index)
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{
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m_settings.m_lpfFIRlog2Decim = index > 2 ? 2 : index;
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setSampleRateLimits();
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sendSettings();
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}
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void PlutoSDRInputGui::on_lpFIRGain_currentIndexChanged(int index)
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{
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m_settings.m_lpfFIRGain = 6*(index > 3 ? 3 : index) - 12;
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sendSettings();
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}
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void PlutoSDRInputGui::on_gainMode_currentIndexChanged(int index)
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{
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m_settings.m_gainMode = (PlutoSDRInputSettings::GainMode) (index < PlutoSDRInputSettings::GAIN_END ? index : 0);
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ui->gain->setEnabled(m_settings.m_gainMode == PlutoSDRInputSettings::GAIN_MANUAL);
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sendSettings();
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}
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void PlutoSDRInputGui::on_gain_valueChanged(int value)
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{
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ui->gainText->setText(tr("%1").arg(value));
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m_settings.m_gain = value;
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sendSettings();
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}
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void PlutoSDRInputGui::on_antenna_currentIndexChanged(int index)
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{
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m_settings.m_antennaPath = (PlutoSDRInputSettings::RFPath) (index < PlutoSDRInputSettings::RFPATH_END ? index : 0);
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sendSettings();
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}
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void PlutoSDRInputGui::on_transverter_clicked()
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{
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m_settings.m_transverterMode = ui->transverter->getDeltaFrequencyAcive();
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m_settings.m_transverterDeltaFrequency = ui->transverter->getDeltaFrequency();
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m_settings.m_iqOrder = ui->transverter->getIQOrder();
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qDebug("PlutoSDRInputGui::on_transverter_clicked: %lld Hz %s", m_settings.m_transverterDeltaFrequency, m_settings.m_transverterMode ? "on" : "off");
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updateFrequencyLimits();
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m_settings.m_centerFrequency = ui->centerFrequency->getValueNew()*1000;
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sendSettings();
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}
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void PlutoSDRInputGui::on_sampleRateMode_toggled(bool checked)
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{
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m_sampleRateMode = checked;
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displaySampleRate();
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}
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void PlutoSDRInputGui::displaySampleRate()
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{
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ui->sampleRate->blockSignals(true);
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displayFcTooltip();
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if (m_sampleRateMode)
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{
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ui->sampleRateMode->setStyleSheet("QToolButton { background:rgb(60,60,60); }");
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ui->sampleRateMode->setText("SR");
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ui->sampleRate->setValueRange(8, DevicePlutoSDR::srLowLimitFreq, DevicePlutoSDR::srHighLimitFreq);
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ui->sampleRate->setValue(m_settings.m_devSampleRate);
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ui->sampleRate->setToolTip("Device to host sample rate (S/s)");
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ui->deviceRateText->setToolTip("Baseband sample rate (S/s)");
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uint32_t basebandSampleRate = m_settings.m_devSampleRate/(1<<m_settings.m_log2Decim);
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ui->deviceRateText->setText(tr("%1k").arg(QString::number(basebandSampleRate / 1000.0f, 'g', 5)));
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}
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else
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{
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ui->sampleRateMode->setStyleSheet("QToolButton { background:rgb(50,50,50); }");
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ui->sampleRateMode->setText("BB");
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ui->sampleRate->setValueRange(8, DevicePlutoSDR::srLowLimitFreq/(1<<m_settings.m_log2Decim), DevicePlutoSDR::srHighLimitFreq/(1<<m_settings.m_log2Decim));
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ui->sampleRate->setValue(m_settings.m_devSampleRate/(1<<m_settings.m_log2Decim));
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ui->sampleRate->setToolTip("Baseband sample rate (S/s)");
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ui->deviceRateText->setToolTip("Device to host sample rate (S/s)");
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ui->deviceRateText->setText(tr("%1k").arg(QString::number(m_settings.m_devSampleRate / 1000.0f, 'g', 5)));
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}
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ui->sampleRate->blockSignals(false);
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}
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void PlutoSDRInputGui::displayFcTooltip()
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{
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int32_t fShift = DeviceSampleSource::calculateFrequencyShift(
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m_settings.m_log2Decim,
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(DeviceSampleSource::fcPos_t) m_settings.m_fcPos,
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m_settings.m_devSampleRate,
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DeviceSampleSource::FrequencyShiftScheme::FSHIFT_STD
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);
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ui->fcPos->setToolTip(tr("Relative position of device center frequency: %1 kHz").arg(QString::number(fShift / 1000.0f, 'g', 5)));
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}
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void PlutoSDRInputGui::displaySettings()
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{
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ui->transverter->setDeltaFrequency(m_settings.m_transverterDeltaFrequency);
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ui->transverter->setDeltaFrequencyActive(m_settings.m_transverterMode);
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ui->transverter->setIQOrder(m_settings.m_iqOrder);
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updateFrequencyLimits();
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ui->centerFrequency->setValue(m_settings.m_centerFrequency / 1000);
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displaySampleRate();
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ui->dcOffset->setChecked(m_settings.m_dcBlock);
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ui->iqImbalance->setChecked(m_settings.m_iqCorrection);
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ui->bbDCOffset->setChecked(m_settings.m_hwBBDCBlock);
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ui->rfDCOffset->setChecked(m_settings.m_hwRFDCBlock);
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ui->hwIQImbalance->setChecked(m_settings.m_hwIQCorrection);
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ui->loPPM->setValue(m_settings.m_LOppmTenths);
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ui->loPPMText->setText(QString("%1").arg(QString::number(m_settings.m_LOppmTenths/10.0, 'f', 1)));
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ui->swDecim->setCurrentIndex(m_settings.m_log2Decim);
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ui->fcPos->setCurrentIndex((int) m_settings.m_fcPos);
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ui->lpf->setValue(m_settings.m_lpfBW / 1000);
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ui->lpFIREnable->setChecked(m_settings.m_lpfFIREnable);
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ui->lpFIR->setValue(m_settings.m_lpfFIRBW / 1000);
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ui->lpFIRDecimation->setCurrentIndex(m_settings.m_lpfFIRlog2Decim);
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ui->lpFIRGain->setCurrentIndex((m_settings.m_lpfFIRGain + 12)/6);
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ui->lpFIRDecimation->setEnabled(m_settings.m_lpfFIREnable);
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ui->lpFIRGain->setEnabled(m_settings.m_lpfFIREnable);
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ui->gainMode->setCurrentIndex((int) m_settings.m_gainMode);
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ui->gain->setValue(m_settings.m_gain);
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ui->gainText->setText(tr("%1").arg(m_settings.m_gain));
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ui->antenna->setCurrentIndex((int) m_settings.m_antennaPath);
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setFIRBWLimits();
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setSampleRateLimits();
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}
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void PlutoSDRInputGui::sendSettings(bool forceSettings)
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{
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m_forceSettings = forceSettings;
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if(!m_updateTimer.isActive()) { m_updateTimer.start(100); }
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}
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void PlutoSDRInputGui::updateHardware()
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{
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if (m_doApplySettings)
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{
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qDebug() << "PlutoSDRInputGui::updateHardware";
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PlutoSDRInput::MsgConfigurePlutoSDR* message = PlutoSDRInput::MsgConfigurePlutoSDR::create(m_settings, m_forceSettings);
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m_sampleSource->getInputMessageQueue()->push(message);
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m_forceSettings = false;
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m_updateTimer.stop();
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}
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}
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void PlutoSDRInputGui::blockApplySettings(bool block)
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{
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m_doApplySettings = !block;
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}
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void PlutoSDRInputGui::updateStatus()
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{
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int state = m_deviceUISet->m_deviceAPI->state();
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if(m_lastEngineState != state)
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{
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switch(state)
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{
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case DeviceAPI::StNotStarted:
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ui->startStop->setStyleSheet("QToolButton { background:rgb(79,79,79); }");
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break;
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case DeviceAPI::StIdle:
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ui->startStop->setStyleSheet("QToolButton { background-color : blue; }");
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break;
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case DeviceAPI::StRunning:
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ui->startStop->setStyleSheet("QToolButton { background-color : green; }");
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break;
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case DeviceAPI::StError:
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ui->startStop->setStyleSheet("QToolButton { background-color : red; }");
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QMessageBox::information(this, tr("Message"), m_deviceUISet->m_deviceAPI->errorMessage());
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break;
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default:
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break;
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}
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m_lastEngineState = state;
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}
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if (m_statusCounter % 2 == 0) // 1s
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{
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uint32_t adcRate = ((PlutoSDRInput *) m_sampleSource)->getADCSampleRate();
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if (adcRate < 100000000) {
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ui->adcRateText->setText(tr("%1k").arg(QString::number(adcRate / 1000.0f, 'g', 5)));
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} else {
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ui->adcRateText->setText(tr("%1M").arg(QString::number(adcRate / 1000000.0f, 'g', 5)));
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}
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}
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if (m_statusCounter % 4 == 0) // 2s
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{
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std::string rssiStr;
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((PlutoSDRInput *) m_sampleSource)->getRSSI(rssiStr);
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ui->rssiText->setText(tr("-%1").arg(QString::fromStdString(rssiStr)));
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int gaindB;
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((PlutoSDRInput *) m_sampleSource)->getGain(gaindB);
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ui->actualGainText->setText(tr("%1").arg(gaindB));
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}
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if (m_statusCounter % 10 == 0) // 5s
|
|
{
|
|
if (m_deviceUISet->m_deviceAPI->isBuddyLeader()) {
|
|
((PlutoSDRInput *) m_sampleSource)->fetchTemperature();
|
|
}
|
|
|
|
ui->temperatureText->setText(tr("%1C").arg(QString::number(((PlutoSDRInput *) m_sampleSource)->getTemperature(), 'f', 0)));
|
|
}
|
|
|
|
m_statusCounter++;
|
|
}
|
|
|
|
void PlutoSDRInputGui::setFIRBWLimits()
|
|
{
|
|
float high = DevicePlutoSDR::firBWHighLimitFactor * ((PlutoSDRInput *) m_sampleSource)->getFIRSampleRate();
|
|
float low = DevicePlutoSDR::firBWLowLimitFactor * ((PlutoSDRInput *) m_sampleSource)->getFIRSampleRate();
|
|
ui->lpFIR->setValueRange(5, (int(low)/1000)+1, (int(high)/1000)+1);
|
|
ui->lpFIR->setValue(m_settings.m_lpfFIRBW/1000);
|
|
}
|
|
|
|
void PlutoSDRInputGui::setSampleRateLimits()
|
|
{
|
|
uint32_t low = ui->lpFIREnable->isChecked() ? DevicePlutoSDR::srLowLimitFreq / (1<<ui->lpFIRDecimation->currentIndex()) : DevicePlutoSDR::srLowLimitFreq;
|
|
ui->sampleRate->setValueRange(8, low, DevicePlutoSDR::srHighLimitFreq);
|
|
ui->sampleRate->setValue(m_settings.m_devSampleRate);
|
|
}
|
|
|
|
void PlutoSDRInputGui::updateFrequencyLimits()
|
|
{
|
|
qint64 minLimit, maxLimit;
|
|
// values should be in kHz
|
|
qint64 deltaFrequency = m_settings.m_transverterMode ? m_settings.m_transverterDeltaFrequency/1000 : 0;
|
|
((PlutoSDRInput *) m_sampleSource)->getLORange(minLimit, maxLimit);
|
|
|
|
minLimit = minLimit/1000 + deltaFrequency;
|
|
maxLimit = maxLimit/1000 + deltaFrequency;
|
|
|
|
minLimit = minLimit < 0 ? 0 : minLimit > 9999999 ? 9999999 : minLimit;
|
|
maxLimit = maxLimit < 0 ? 0 : maxLimit > 9999999 ? 9999999 : maxLimit;
|
|
|
|
qDebug("PlutoSDRInputGui::updateFrequencyLimits: delta: %lld min: %lld max: %lld", deltaFrequency, minLimit, maxLimit);
|
|
|
|
ui->centerFrequency->setValueRange(7, minLimit, maxLimit);
|
|
}
|
|
|
|
void PlutoSDRInputGui::handleInputMessages()
|
|
{
|
|
Message* message;
|
|
|
|
while ((message = m_inputMessageQueue.pop()) != 0)
|
|
{
|
|
qDebug("PlutoSDRInputGui::handleInputMessages: message: %s", message->getIdentifier());
|
|
|
|
if (DSPSignalNotification::match(*message))
|
|
{
|
|
DSPSignalNotification* notif = (DSPSignalNotification*) message;
|
|
m_sampleRate = notif->getSampleRate();
|
|
m_deviceCenterFrequency = notif->getCenterFrequency();
|
|
qDebug("PlutoSDRInputGui::handleInputMessages: DSPSignalNotification: SampleRate: %d, CenterFrequency: %llu", notif->getSampleRate(), notif->getCenterFrequency());
|
|
updateSampleRateAndFrequency();
|
|
setFIRBWLimits();
|
|
|
|
delete message;
|
|
}
|
|
else
|
|
{
|
|
if (handleMessage(*message))
|
|
{
|
|
delete message;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
void PlutoSDRInputGui::updateSampleRateAndFrequency()
|
|
{
|
|
m_deviceUISet->getSpectrum()->setSampleRate(m_sampleRate);
|
|
m_deviceUISet->getSpectrum()->setCenterFrequency(m_deviceCenterFrequency);
|
|
displaySampleRate();
|
|
}
|
|
|
|
void PlutoSDRInputGui::openDeviceSettingsDialog(const QPoint& p)
|
|
{
|
|
BasicDeviceSettingsDialog dialog(this);
|
|
dialog.setUseReverseAPI(m_settings.m_useReverseAPI);
|
|
dialog.setReverseAPIAddress(m_settings.m_reverseAPIAddress);
|
|
dialog.setReverseAPIPort(m_settings.m_reverseAPIPort);
|
|
dialog.setReverseAPIDeviceIndex(m_settings.m_reverseAPIDeviceIndex);
|
|
|
|
dialog.move(p);
|
|
dialog.exec();
|
|
|
|
m_settings.m_useReverseAPI = dialog.useReverseAPI();
|
|
m_settings.m_reverseAPIAddress = dialog.getReverseAPIAddress();
|
|
m_settings.m_reverseAPIPort = dialog.getReverseAPIPort();
|
|
m_settings.m_reverseAPIDeviceIndex = dialog.getReverseAPIDeviceIndex();
|
|
|
|
sendSettings();
|
|
}
|