mirror of
https://github.com/f4exb/sdrangel.git
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628 lines
22 KiB
C++
628 lines
22 KiB
C++
///////////////////////////////////////////////////////////////////////////////////
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// Copyright (C) 2016 Edouard Griffiths, F4EXB //
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// Copyright (C) 2020 Jon Beniston, M7RCE //
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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 <QDockWidget>
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#include <QMainWindow>
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#include <QFileDialog>
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#include <QTime>
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#include <QDebug>
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#include <QMessageBox>
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#include "device/deviceuiset.h"
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#include "plugin/pluginapi.h"
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#include "util/simpleserializer.h"
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#include "util/db.h"
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#include "dsp/spectrumvis.h"
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#include "dsp/scopevis.h"
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#include "dsp/dspcommands.h"
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#include "dsp/dspengine.h"
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#include "dsp/glscopesettings.h"
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#include "gui/glspectrum.h"
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#include "gui/crightclickenabler.h"
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#include "gui/basicchannelsettingsdialog.h"
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#include "gui/devicestreamselectiondialog.h"
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#include "maincore.h"
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#include "ui_ieee_802_15_4_modgui.h"
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#include "ieee_802_15_4_modgui.h"
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#include "ieee_802_15_4_modrepeatdialog.h"
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#include "ieee_802_15_4_modtxsettingsdialog.h"
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IEEE_802_15_4_ModGUI* IEEE_802_15_4_ModGUI::create(PluginAPI* pluginAPI, DeviceUISet *deviceUISet, BasebandSampleSource *channelTx)
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{
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IEEE_802_15_4_ModGUI* gui = new IEEE_802_15_4_ModGUI(pluginAPI, deviceUISet, channelTx);
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return gui;
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}
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void IEEE_802_15_4_ModGUI::destroy()
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{
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delete this;
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}
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void IEEE_802_15_4_ModGUI::setName(const QString& name)
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{
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setObjectName(name);
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}
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QString IEEE_802_15_4_ModGUI::getName() const
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{
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return objectName();
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}
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qint64 IEEE_802_15_4_ModGUI::getCenterFrequency() const {
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return m_channelMarker.getCenterFrequency();
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}
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void IEEE_802_15_4_ModGUI::setCenterFrequency(qint64 centerFrequency)
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{
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m_channelMarker.setCenterFrequency(centerFrequency);
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::resetToDefaults()
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{
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m_settings.resetToDefaults();
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displaySettings();
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applySettings(true);
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}
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QByteArray IEEE_802_15_4_ModGUI::serialize() const
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{
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return m_settings.serialize();
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}
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bool IEEE_802_15_4_ModGUI::deserialize(const QByteArray& data)
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{
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if(m_settings.deserialize(data)) {
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displaySettings();
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applySettings(true);
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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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bool IEEE_802_15_4_ModGUI::handleMessage(const Message& message)
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{
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if (DSPSignalNotification::match(message))
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{
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DSPSignalNotification& notif = (DSPSignalNotification&) message;
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m_basebandSampleRate = notif.getSampleRate();
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m_scopeVis->setLiveRate(m_basebandSampleRate);
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checkSampleRate();
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return true;
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}
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else if (IEEE_802_15_4_Mod::MsgConfigureIEEE_802_15_4_Mod::match(message))
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{
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qDebug("IEEE_802_15_4_ModGUI::handleMessage: MsgConfigureIEEE_802_15_4_Mod");
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const IEEE_802_15_4_Mod::MsgConfigureIEEE_802_15_4_Mod& cfg = (IEEE_802_15_4_Mod::MsgConfigureIEEE_802_15_4_Mod&) message;
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m_settings = cfg.getSettings();
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blockApplySettings(true);
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m_channelMarker.updateSettings(static_cast<const ChannelMarker*>(m_settings.m_channelMarker));
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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 IEEE_802_15_4_ModGUI::channelMarkerChangedByCursor()
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{
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ui->deltaFrequency->setValue(m_channelMarker.getCenterFrequency());
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m_settings.m_inputFrequencyOffset = m_channelMarker.getCenterFrequency();
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::handleSourceMessages()
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{
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Message* message;
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while ((message = getInputMessageQueue()->pop()) != 0)
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{
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if (handleMessage(*message))
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{
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delete message;
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}
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}
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}
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// Check sample rate is good enough and if not, display a warning in title
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void IEEE_802_15_4_ModGUI::checkSampleRate()
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{
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int cr = m_settings.getChipRate();
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if ((m_basebandSampleRate % cr) != 0)
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{
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ui->chipRateText->setStyleSheet("QLabel { background:rgb(200,50,50); }");
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ui->chipRateText->setToolTip(QString("Baseband sample rate %1 S/s is not an integer multiple of chip rate %2 S/s").arg(m_basebandSampleRate).arg(cr));
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}
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else if ((m_basebandSampleRate / cr) <= 2)
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{
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ui->chipRateText->setStyleSheet("QLabel { background:rgb(200,50,50); }");
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ui->chipRateText->setToolTip(QString("Baseband sample rate %1 S/s is too low for chip rate %2 S/s").arg(m_basebandSampleRate).arg(cr));
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}
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else
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{
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ui->chipRateText->setStyleSheet("QLabel { background:rgb(79,79,79); }");
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ui->chipRateText->setToolTip("Chip rate");
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}
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}
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void IEEE_802_15_4_ModGUI::on_deltaFrequency_changed(qint64 value)
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{
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m_channelMarker.setCenterFrequency(value);
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m_settings.m_inputFrequencyOffset = m_channelMarker.getCenterFrequency();
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::on_phy_currentIndexChanged(int value)
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{
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QString phy = ui->phy->currentText();
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// If m_doApplySettings is set, we are here from a call to displaySettings,
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// so we only want to display the current settings, not update them
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// as though a user had selected a new PHY
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if (m_doApplySettings)
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m_settings.setPHY(phy);
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displayRFBandwidth(m_settings.m_rfBandwidth);
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ui->rfBW->setValue(m_settings.m_rfBandwidth / 1000.0);
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ui->glSpectrum->setCenterFrequency(0);
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ui->glSpectrum->setSampleRate(m_settings.m_spectrumRate);
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displayChipRate(m_settings);
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checkSampleRate();
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applySettings();
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// Remove custom PHY when deselected, as we no longer know how to set it
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if (value < 6)
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ui->phy->removeItem(6);
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}
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void IEEE_802_15_4_ModGUI::on_rfBW_valueChanged(int value)
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{
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float bw = value * 1000.0f;
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displayRFBandwidth(bw);
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m_channelMarker.setBandwidth(bw);
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m_settings.m_rfBandwidth = bw;
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::on_gain_valueChanged(int value)
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{
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ui->gainText->setText(QString("%1dB").arg(value));
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m_settings.m_gain = value;
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::on_channelMute_toggled(bool checked)
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{
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m_settings.m_channelMute = checked;
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::on_txButton_clicked()
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{
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transmit();
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}
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void IEEE_802_15_4_ModGUI::on_frame_returnPressed()
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{
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transmit();
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}
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void IEEE_802_15_4_ModGUI::on_frame_editingFinished()
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{
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m_settings.m_data = ui->frame->text();
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::on_repeat_toggled(bool checked)
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{
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m_settings.m_repeat = checked;
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::repeatSelect()
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{
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IEEE_802_15_4_ModRepeatDialog dialog(m_settings.m_repeatDelay, m_settings.m_repeatCount);
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if (dialog.exec() == QDialog::Accepted)
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{
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m_settings.m_repeatDelay = dialog.m_repeatDelay;
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m_settings.m_repeatCount = dialog.m_repeatCount;
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applySettings();
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}
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}
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void IEEE_802_15_4_ModGUI::txSettingsSelect()
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{
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IEEE_802_15_4_ModTXSettingsDialog dialog(
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m_settings.m_rampUpBits,
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m_settings.m_rampDownBits,
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m_settings.m_rampRange,
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m_settings.m_modulateWhileRamping,
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m_settings.m_modulation,
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m_settings.m_bitRate,
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m_settings.m_pulseShaping,
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m_settings.m_beta,
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m_settings.m_symbolSpan,
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m_settings.m_scramble,
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m_settings.m_polynomial,
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m_settings.m_lpfTaps,
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m_settings.m_bbNoise,
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m_settings.m_writeToFile
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);
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if (dialog.exec() == QDialog::Accepted)
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{
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m_settings.m_rampUpBits = dialog.m_rampUpBits;
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m_settings.m_rampDownBits = dialog.m_rampDownBits;
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m_settings.m_rampRange = dialog.m_rampRange;
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m_settings.m_modulateWhileRamping = dialog.m_modulateWhileRamping;
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m_settings.m_modulation = static_cast<IEEE_802_15_4_ModSettings::Modulation>(dialog.m_modulation);
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m_settings.m_bitRate = dialog.m_bitRate;
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m_settings.m_pulseShaping = static_cast<IEEE_802_15_4_ModSettings::PulseShaping>(dialog.m_pulseShaping);
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m_settings.m_beta = dialog.m_beta;
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m_settings.m_symbolSpan = dialog.m_symbolSpan;
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m_settings.m_scramble = dialog.m_scramble;
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m_settings.m_polynomial = dialog.m_polynomial;
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m_settings.m_lpfTaps = dialog.m_lpfTaps;
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m_settings.m_bbNoise = dialog.m_bbNoise;
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m_settings.m_writeToFile = dialog.m_writeToFile;
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displaySettings();
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applySettings();
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}
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}
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void IEEE_802_15_4_ModGUI::on_udpEnabled_clicked(bool checked)
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{
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m_settings.m_udpEnabled = checked;
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::on_udpAddress_editingFinished()
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{
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m_settings.m_udpAddress = ui->udpAddress->text();
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::on_udpPort_editingFinished()
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{
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m_settings.m_udpPort = ui->udpPort->text().toInt();
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::on_udpBytesFormat_clicked(bool checked)
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{
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m_settings.m_udpBytesFormat = checked;
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::onWidgetRolled(QWidget* widget, bool rollDown)
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{
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(void) widget;
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(void) rollDown;
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saveState(m_rollupState);
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applySettings();
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}
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void IEEE_802_15_4_ModGUI::onMenuDialogCalled(const QPoint &p)
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{
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if (m_contextMenuType == ContextMenuChannelSettings)
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{
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BasicChannelSettingsDialog dialog(&m_channelMarker, this);
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dialog.setUseReverseAPI(m_settings.m_useReverseAPI);
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dialog.setReverseAPIAddress(m_settings.m_reverseAPIAddress);
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dialog.setReverseAPIPort(m_settings.m_reverseAPIPort);
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dialog.setReverseAPIDeviceIndex(m_settings.m_reverseAPIDeviceIndex);
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dialog.setReverseAPIChannelIndex(m_settings.m_reverseAPIChannelIndex);
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dialog.move(p);
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dialog.exec();
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m_settings.m_inputFrequencyOffset = m_channelMarker.getCenterFrequency();
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m_settings.m_rgbColor = m_channelMarker.getColor().rgb();
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m_settings.m_title = m_channelMarker.getTitle();
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m_settings.m_useReverseAPI = dialog.useReverseAPI();
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m_settings.m_reverseAPIAddress = dialog.getReverseAPIAddress();
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m_settings.m_reverseAPIPort = dialog.getReverseAPIPort();
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m_settings.m_reverseAPIDeviceIndex = dialog.getReverseAPIDeviceIndex();
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m_settings.m_reverseAPIChannelIndex = dialog.getReverseAPIChannelIndex();
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setWindowTitle(m_settings.m_title);
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setTitleColor(m_settings.m_rgbColor);
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applySettings();
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}
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else if ((m_contextMenuType == ContextMenuStreamSettings) && (m_deviceUISet->m_deviceMIMOEngine))
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{
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DeviceStreamSelectionDialog dialog(this);
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dialog.setNumberOfStreams(m_IEEE_802_15_4_Mod->getNumberOfDeviceStreams());
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dialog.setStreamIndex(m_settings.m_streamIndex);
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dialog.move(p);
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dialog.exec();
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m_settings.m_streamIndex = dialog.getSelectedStreamIndex();
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m_channelMarker.clearStreamIndexes();
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m_channelMarker.addStreamIndex(m_settings.m_streamIndex);
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displayStreamIndex();
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applySettings();
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}
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resetContextMenuType();
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}
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IEEE_802_15_4_ModGUI::IEEE_802_15_4_ModGUI(PluginAPI* pluginAPI, DeviceUISet *deviceUISet, BasebandSampleSource *channelTx, QWidget* parent) :
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ChannelGUI(parent),
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ui(new Ui::IEEE_802_15_4_ModGUI),
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m_pluginAPI(pluginAPI),
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m_deviceUISet(deviceUISet),
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m_channelMarker(this),
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m_doApplySettings(true),
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m_basebandSampleRate(12000000)
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{
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ui->setupUi(this);
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m_helpURL = "plugins/channeltx/mod802.15.4/readme.md";
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setAttribute(Qt::WA_DeleteOnClose, true);
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connect(this, SIGNAL(widgetRolled(QWidget*,bool)), this, SLOT(onWidgetRolled(QWidget*,bool)));
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connect(this, SIGNAL(customContextMenuRequested(const QPoint &)), this, SLOT(onMenuDialogCalled(const QPoint &)));
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m_IEEE_802_15_4_Mod = (IEEE_802_15_4_Mod*) channelTx;
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m_IEEE_802_15_4_Mod->setMessageQueueToGUI(getInputMessageQueue());
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connect(&MainCore::instance()->getMasterTimer(), SIGNAL(timeout()), this, SLOT(tick()));
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m_scopeVis = m_IEEE_802_15_4_Mod->getScopeSink();
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m_scopeVis->setGLScope(ui->glScope);
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ui->glScope->connectTimer(MainCore::instance()->getMasterTimer());
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connect(&MainCore::instance()->getMasterTimer(), SIGNAL(timeout()), this, SLOT(tick())); // 50 ms
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ui->scopeGUI->setBuddies(m_scopeVis->getInputMessageQueue(), m_scopeVis, ui->glScope);
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// Scope settings to display the IQ waveforms
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ui->scopeGUI->setPreTrigger(1);
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GLScopeSettings::TraceData traceDataI, traceDataQ;
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traceDataI.m_projectionType = Projector::ProjectionReal;
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traceDataI.m_amp = 1.0; // for -1 to +1
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traceDataI.m_ofs = 0.0; // vertical offset
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traceDataQ.m_projectionType = Projector::ProjectionImag;
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traceDataQ.m_amp = 1.0;
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traceDataQ.m_ofs = 0.0;
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ui->scopeGUI->changeTrace(0, traceDataI);
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ui->scopeGUI->addTrace(traceDataQ);
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ui->scopeGUI->setDisplayMode(GLScopeSettings::DisplayPol);
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ui->scopeGUI->focusOnTrace(0); // re-focus to take changes into account in the GUI
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GLScopeSettings::TriggerData triggerData;
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triggerData.m_triggerLevel = 0.1;
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triggerData.m_triggerLevelCoarse = 10;
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triggerData.m_triggerPositiveEdge = true;
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ui->scopeGUI->changeTrigger(0, triggerData);
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ui->scopeGUI->focusOnTrigger(0); // re-focus to take changes into account in the GUI
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m_scopeVis->setLiveRate(m_basebandSampleRate);
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//m_scopeVis->setFreeRun(false); // FIXME: add method rather than call m_scopeVis->configure()
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m_spectrumVis = m_IEEE_802_15_4_Mod->getSpectrumVis();
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m_spectrumVis->setGLSpectrum(ui->glSpectrum);
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ui->glSpectrum->setCenterFrequency(0);
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ui->glSpectrum->setSampleRate(m_settings.m_spectrumRate);
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ui->glSpectrum->setSsbSpectrum(false);
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ui->glSpectrum->setDisplayCurrent(true);
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ui->glSpectrum->setLsbDisplay(false);
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ui->glSpectrum->setDisplayWaterfall(false);
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ui->glSpectrum->setDisplayMaxHold(false);
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ui->glSpectrum->setDisplayHistogram(false);
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CRightClickEnabler *repeatRightClickEnabler = new CRightClickEnabler(ui->repeat);
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connect(repeatRightClickEnabler, SIGNAL(rightClick(const QPoint &)), this, SLOT(repeatSelect()));
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CRightClickEnabler *txRightClickEnabler = new CRightClickEnabler(ui->txButton);
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connect(txRightClickEnabler, SIGNAL(rightClick(const QPoint &)), this, SLOT(txSettingsSelect()));
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ui->deltaFrequencyLabel->setText(QString("%1f").arg(QChar(0x94, 0x03)));
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ui->deltaFrequency->setColorMapper(ColorMapper(ColorMapper::GrayGold));
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ui->deltaFrequency->setValueRange(false, 7, -9999999, 9999999);
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m_channelMarker.blockSignals(true);
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m_channelMarker.setColor(Qt::red);
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m_channelMarker.setBandwidth(12500);
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m_channelMarker.setCenterFrequency(0);
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m_channelMarker.setTitle("802.15.4 Modulator");
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m_channelMarker.setSourceOrSinkStream(false);
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m_channelMarker.blockSignals(false);
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m_channelMarker.setVisible(true); // activate signal on the last setting only
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m_deviceUISet->addChannelMarker(&m_channelMarker);
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m_deviceUISet->addRollupWidget(this);
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connect(&m_channelMarker, SIGNAL(changedByCursor()), this, SLOT(channelMarkerChangedByCursor()));
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connect(getInputMessageQueue(), SIGNAL(messageEnqueued()), this, SLOT(handleSourceMessages()));
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m_IEEE_802_15_4_Mod->setLevelMeter(ui->volumeMeter);
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|
|
|
m_settings.setChannelMarker(&m_channelMarker);
|
|
m_settings.setRollupState(&m_rollupState);
|
|
|
|
ui->spectrumGUI->setBuddies(m_spectrumVis, ui->glSpectrum);
|
|
|
|
displaySettings();
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|
applySettings();
|
|
}
|
|
|
|
IEEE_802_15_4_ModGUI::~IEEE_802_15_4_ModGUI()
|
|
{
|
|
delete ui;
|
|
}
|
|
|
|
void IEEE_802_15_4_ModGUI::transmit()
|
|
{
|
|
QString data = ui->frame->text();
|
|
ui->transmittedText->appendPlainText(data);
|
|
IEEE_802_15_4_Mod::MsgTxHexString *msg = IEEE_802_15_4_Mod::MsgTxHexString::create(data);
|
|
m_IEEE_802_15_4_Mod->getInputMessageQueue()->push(msg);
|
|
}
|
|
|
|
void IEEE_802_15_4_ModGUI::blockApplySettings(bool block)
|
|
{
|
|
m_doApplySettings = !block;
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|
}
|
|
|
|
void IEEE_802_15_4_ModGUI::applySettings(bool force)
|
|
{
|
|
if (m_doApplySettings)
|
|
{
|
|
IEEE_802_15_4_Mod::MsgConfigureIEEE_802_15_4_Mod *msg = IEEE_802_15_4_Mod::MsgConfigureIEEE_802_15_4_Mod::create(m_settings, force);
|
|
m_IEEE_802_15_4_Mod->getInputMessageQueue()->push(msg);
|
|
}
|
|
}
|
|
|
|
void IEEE_802_15_4_ModGUI::displaySettings()
|
|
{
|
|
m_channelMarker.blockSignals(true);
|
|
m_channelMarker.setCenterFrequency(m_settings.m_inputFrequencyOffset);
|
|
m_channelMarker.setTitle(m_settings.m_title);
|
|
m_channelMarker.setBandwidth(m_settings.m_rfBandwidth);
|
|
m_channelMarker.blockSignals(false);
|
|
m_channelMarker.setColor(m_settings.m_rgbColor); // activate signal on the last setting only
|
|
|
|
setTitleColor(m_settings.m_rgbColor);
|
|
setWindowTitle(m_channelMarker.getTitle());
|
|
displayStreamIndex();
|
|
|
|
blockApplySettings(true);
|
|
|
|
ui->deltaFrequency->setValue(m_channelMarker.getCenterFrequency());
|
|
if ((m_settings.m_bitRate == 20000)
|
|
&& m_settings.m_subGHzBand
|
|
&& (m_settings.m_pulseShaping == IEEE_802_15_4_ModSettings::RC)
|
|
&& (m_settings.m_modulation == IEEE_802_15_4_ModSettings::BPSK))
|
|
ui->phy->setCurrentIndex(0);
|
|
else if ((m_settings.m_bitRate == 40000)
|
|
&& m_settings.m_subGHzBand
|
|
&& (m_settings.m_pulseShaping == IEEE_802_15_4_ModSettings::RC)
|
|
&& (m_settings.m_modulation == IEEE_802_15_4_ModSettings::BPSK))
|
|
ui->phy->setCurrentIndex(1);
|
|
else if ((m_settings.m_bitRate == 100000)
|
|
&& m_settings.m_subGHzBand
|
|
&& (m_settings.m_modulation == IEEE_802_15_4_ModSettings::OQPSK))
|
|
ui->phy->setCurrentIndex(2);
|
|
else if ((m_settings.m_bitRate == 250000)
|
|
&& m_settings.m_subGHzBand
|
|
&& (m_settings.m_pulseShaping == IEEE_802_15_4_ModSettings::SINE)
|
|
&& (m_settings.m_modulation == IEEE_802_15_4_ModSettings::OQPSK))
|
|
ui->phy->setCurrentIndex(3);
|
|
else if ((m_settings.m_bitRate == 250000)
|
|
&& m_settings.m_subGHzBand
|
|
&& (m_settings.m_pulseShaping == IEEE_802_15_4_ModSettings::RC)
|
|
&& (m_settings.m_modulation == IEEE_802_15_4_ModSettings::OQPSK))
|
|
ui->phy->setCurrentIndex(4);
|
|
else if ((m_settings.m_bitRate == 250000)
|
|
&& !m_settings.m_subGHzBand
|
|
&& (m_settings.m_pulseShaping == IEEE_802_15_4_ModSettings::SINE)
|
|
&& (m_settings.m_modulation == IEEE_802_15_4_ModSettings::OQPSK))
|
|
ui->phy->setCurrentIndex(5);
|
|
else
|
|
{
|
|
ui->phy->removeItem(6);
|
|
ui->phy->addItem(m_settings.getPHY());
|
|
ui->phy->setCurrentIndex(6);
|
|
}
|
|
ui->glSpectrum->setCenterFrequency(0);
|
|
ui->glSpectrum->setSampleRate(m_settings.m_spectrumRate);
|
|
|
|
displayRFBandwidth(m_settings.m_rfBandwidth);
|
|
ui->rfBW->setValue(m_settings.m_rfBandwidth / 1000.0);
|
|
|
|
displayChipRate(m_settings);
|
|
|
|
ui->gainText->setText(QString("%1").arg((double)m_settings.m_gain, 0, 'f', 1));
|
|
ui->gain->setValue(m_settings.m_gain);
|
|
|
|
ui->channelMute->setChecked(m_settings.m_channelMute);
|
|
ui->repeat->setChecked(m_settings.m_repeat);
|
|
|
|
ui->frame->setText(m_settings.m_data);
|
|
|
|
ui->udpEnabled->setChecked(m_settings.m_udpEnabled);
|
|
ui->udpAddress->setText(m_settings.m_udpAddress);
|
|
ui->udpPort->setText(QString::number(m_settings.m_udpPort));
|
|
|
|
restoreState(m_rollupState);
|
|
blockApplySettings(false);
|
|
}
|
|
|
|
void IEEE_802_15_4_ModGUI::displayRFBandwidth(int bandwidth)
|
|
{
|
|
ui->rfBWText->setText(getDisplayValueWithMultiplier(bandwidth));
|
|
}
|
|
|
|
void IEEE_802_15_4_ModGUI::displayChipRate(const IEEE_802_15_4_ModSettings& settings)
|
|
{
|
|
ui->chipRateText->setText(getDisplayValueWithMultiplier(settings.getChipRate()));
|
|
}
|
|
|
|
QString IEEE_802_15_4_ModGUI::getDisplayValueWithMultiplier(int value)
|
|
{
|
|
if (value < 1000) {
|
|
return QString("%1").arg(value);
|
|
} else if (value < 10000) {
|
|
return QString("%1k").arg(value / 1000.0, 0, 'f', 2);
|
|
} else if (value < 100000) {
|
|
return QString("%1k").arg(value / 1000.0, 0, 'f', 1);
|
|
} else if (value < 1000000) {
|
|
return QString("%1k").arg(value / 1000.0);
|
|
} else if (value < 10000000) {
|
|
return QString("%1M").arg(value / 1000000.0, 0, 'f', 2);
|
|
} else if (value < 100000000) {
|
|
return QString("%1M").arg(value / 1000000.0, 0, 'f', 1);
|
|
} else {
|
|
return QString("%1M").arg(value / 1000000.0);
|
|
}
|
|
}
|
|
|
|
void IEEE_802_15_4_ModGUI::displayStreamIndex()
|
|
{
|
|
if (m_deviceUISet->m_deviceMIMOEngine) {
|
|
setStreamIndicator(tr("%1").arg(m_settings.m_streamIndex));
|
|
} else {
|
|
setStreamIndicator("S"); // single channel indicator
|
|
}
|
|
}
|
|
|
|
void IEEE_802_15_4_ModGUI::leaveEvent(QEvent*)
|
|
{
|
|
m_channelMarker.setHighlighted(false);
|
|
}
|
|
|
|
void IEEE_802_15_4_ModGUI::enterEvent(QEvent*)
|
|
{
|
|
m_channelMarker.setHighlighted(true);
|
|
}
|
|
|
|
void IEEE_802_15_4_ModGUI::tick()
|
|
{
|
|
double powDb = CalcDb::dbPower(m_IEEE_802_15_4_Mod->getMagSq());
|
|
m_channelPowerDbAvg(powDb);
|
|
ui->channelPower->setText(tr("%1 dB").arg(m_channelPowerDbAvg.asDouble(), 0, 'f', 1));
|
|
}
|