mirror of
https://github.com/f4exb/sdrangel.git
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209 lines
6.4 KiB
C++
209 lines
6.4 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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// Copyright (C) 2015-2022 Edouard Griffiths, F4EXB <f4exb06@gmail.com> //
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// Copyright (C) 2020-2021, 2023 Jon Beniston, M7RCE <jon@beniston.com> //
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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 <QColor>
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#include "dsp/dspengine.h"
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#include "util/simpleserializer.h"
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#include "settings/serializable.h"
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#include "dscdemodsettings.h"
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DSCDemodSettings::DSCDemodSettings() :
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m_channelMarker(nullptr),
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m_scopeGUI(nullptr),
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m_rollupState(nullptr)
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{
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resetToDefaults();
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}
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void DSCDemodSettings::resetToDefaults()
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{
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m_inputFrequencyOffset = 0;
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m_rfBandwidth = 450.0f; // OBW for 2FSK = 2 * deviation + data rate. Then add a bit for carrier frequency offset
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m_filterInvalid = true;
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m_filterColumn = 4;
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m_filter = "";
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m_udpEnabled = false;
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m_udpAddress = "127.0.0.1";
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m_udpPort = 9999;
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m_logFilename = "dsc_log.csv";
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m_logEnabled = false;
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m_feed = true;
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m_rgbColor = QColor(181, 230, 29).rgb();
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m_title = "DSC Demodulator";
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m_streamIndex = 0;
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m_useReverseAPI = false;
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m_reverseAPIAddress = "127.0.0.1";
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m_reverseAPIPort = 8888;
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m_reverseAPIDeviceIndex = 0;
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m_reverseAPIChannelIndex = 0;
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m_workspaceIndex = 0;
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m_hidden = false;
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for (int i = 0; i < DSCDEMOD_COLUMNS; i++)
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{
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m_columnIndexes[i] = i;
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m_columnSizes[i] = -1; // Autosize
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}
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}
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QByteArray DSCDemodSettings::serialize() const
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{
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SimpleSerializer s(1);
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s.writeS32(1, m_inputFrequencyOffset);
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s.writeS32(2, m_streamIndex);
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s.writeBool(3, m_filterInvalid);
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s.writeS32(4, m_filterColumn);
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s.writeString(5, m_filter);
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if (m_channelMarker) {
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s.writeBlob(6, m_channelMarker->serialize());
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}
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s.writeFloat(7, m_rfBandwidth);
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s.writeBool(9, m_udpEnabled);
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s.writeString(10, m_udpAddress);
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s.writeU32(11, m_udpPort);
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s.writeString(12, m_logFilename);
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s.writeBool(13, m_logEnabled);
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s.writeBool(14, m_feed);
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s.writeU32(20, m_rgbColor);
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s.writeString(21, m_title);
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s.writeBool(22, m_useReverseAPI);
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s.writeString(23, m_reverseAPIAddress);
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s.writeU32(24, m_reverseAPIPort);
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s.writeU32(25, m_reverseAPIDeviceIndex);
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s.writeU32(26, m_reverseAPIChannelIndex);
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if (m_rollupState) {
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s.writeBlob(27, m_rollupState->serialize());
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}
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s.writeS32(28, m_workspaceIndex);
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s.writeBlob(29, m_geometryBytes);
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s.writeBool(30, m_hidden);
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s.writeBlob(31, m_scopeGUI->serialize());
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for (int i = 0; i < DSCDEMOD_COLUMNS; i++) {
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s.writeS32(100 + i, m_columnIndexes[i]);
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}
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for (int i = 0; i < DSCDEMOD_COLUMNS; i++) {
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s.writeS32(200 + i, m_columnSizes[i]);
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}
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return s.final();
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}
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bool DSCDemodSettings::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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{
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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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{
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QByteArray bytetmp;
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uint32_t utmp;
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QString strtmp;
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d.readS32(1, &m_inputFrequencyOffset, 0);
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d.readS32(2, &m_streamIndex, 0);
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d.readBool(3, &m_filterInvalid, true);
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d.readS32(4, &m_filterColumn, 5);
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d.readString(5, &m_filter, "");
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if (m_channelMarker)
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{
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d.readBlob(6, &bytetmp);
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m_channelMarker->deserialize(bytetmp);
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}
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d.readFloat(7, &m_rfBandwidth, 450.0f);
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d.readBool(9, &m_udpEnabled);
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d.readString(10, &m_udpAddress);
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d.readU32(11, &utmp);
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if ((utmp > 1023) && (utmp < 65535)) {
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m_udpPort = utmp;
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} else {
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m_udpPort = 9999;
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}
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d.readString(12, &m_logFilename, "dsc_log.csv");
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d.readBool(13, &m_logEnabled, false);
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d.readBool(14, &m_feed, true);
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d.readU32(20, &m_rgbColor, QColor(181, 230, 29).rgb());
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d.readString(21, &m_title, "DSC Demodulator");
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d.readBool(22, &m_useReverseAPI, false);
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d.readString(23, &m_reverseAPIAddress, "127.0.0.1");
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d.readU32(24, &utmp, 0);
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if ((utmp > 1023) && (utmp < 65535)) {
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m_reverseAPIPort = utmp;
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} else {
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m_reverseAPIPort = 8888;
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}
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d.readU32(25, &utmp, 0);
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m_reverseAPIDeviceIndex = utmp > 99 ? 99 : utmp;
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d.readU32(26, &utmp, 0);
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m_reverseAPIChannelIndex = utmp > 99 ? 99 : utmp;
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if (m_rollupState)
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{
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d.readBlob(27, &bytetmp);
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m_rollupState->deserialize(bytetmp);
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}
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d.readS32(28, &m_workspaceIndex, 0);
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d.readBlob(29, &m_geometryBytes);
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d.readBool(30, &m_hidden, false);
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if (m_scopeGUI)
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{
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d.readBlob(31, &bytetmp);
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m_scopeGUI->deserialize(bytetmp);
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}
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for (int i = 0; i < DSCDEMOD_COLUMNS; i++) {
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d.readS32(100 + i, &m_columnIndexes[i], i);
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}
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for (int i = 0; i < DSCDEMOD_COLUMNS; i++) {
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d.readS32(200 + i, &m_columnSizes[i], -1);
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}
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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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