mirror of
https://github.com/f4exb/sdrangel.git
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349 lines
13 KiB
C++
349 lines
13 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) 2015-2020, 2022 Edouard Griffiths, F4EXB <f4exb06@gmail.com> //
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// Copyright (C) 2015 John Greb <hexameron@spam.no> //
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// Copyright (C) 2021 Kacper Michajłow <kasper93@gmail.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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#ifndef PLUGINS_SAMPLEMIMO_LIMESDRMIMO_LIMESDRMIMO_H_
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#define PLUGINS_SAMPLEMIMO_LIMESDRMIMO_LIMESDRMIMO_H_
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#include <stdint.h>
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#include <QString>
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#include <QByteArray>
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#include <QNetworkRequest>
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#include "lime/LimeSuite.h"
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#include "dsp/devicesamplemimo.h"
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#include "limesdrmimosettings.h"
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class QNetworkAccessManager;
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class QNetworkReply;
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class DeviceAPI;
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class LimeSDRMIThread;
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class LimeSDRMOThread;
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struct DeviceLimeSDRParams;
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class LimeSDRMIMO : public DeviceSampleMIMO {
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Q_OBJECT
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public:
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class MsgConfigureLimeSDRMIMO : public Message {
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MESSAGE_CLASS_DECLARATION
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public:
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const LimeSDRMIMOSettings& getSettings() const { return m_settings; }
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const QList<QString>& getSettingsKeys() const { return m_settingsKeys; }
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bool getForce() const { return m_force; }
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static MsgConfigureLimeSDRMIMO* create(const LimeSDRMIMOSettings& settings, const QList<QString>& settingsKeys, bool force) {
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return new MsgConfigureLimeSDRMIMO(settings, settingsKeys, force);
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}
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private:
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LimeSDRMIMOSettings m_settings;
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QList<QString> m_settingsKeys;
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bool m_force;
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MsgConfigureLimeSDRMIMO(const LimeSDRMIMOSettings& settings, const QList<QString>& settingsKeys, bool force) :
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Message(),
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m_settings(settings),
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m_settingsKeys(settingsKeys),
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m_force(force)
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{ }
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};
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class MsgGetStreamInfo : public Message {
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MESSAGE_CLASS_DECLARATION
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public:
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bool getRxElseTx() const { return m_rxElseTx; }
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uint32_t getChannel() const { return m_channel; }
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static MsgGetStreamInfo* create(bool rxElseTx, uint32_t channel)
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{
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return new MsgGetStreamInfo(rxElseTx, channel);
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}
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private:
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bool m_rxElseTx;
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uint32_t m_channel;
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MsgGetStreamInfo(bool rxElseTx, uint32_t channel) :
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Message(),
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m_rxElseTx(rxElseTx),
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m_channel(channel)
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{ }
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};
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class MsgGetDeviceInfo : public Message {
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MESSAGE_CLASS_DECLARATION
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public:
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static MsgGetDeviceInfo* create()
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{
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return new MsgGetDeviceInfo();
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}
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private:
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MsgGetDeviceInfo() :
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Message()
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{ }
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};
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class MsgReportStreamInfo : public Message {
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MESSAGE_CLASS_DECLARATION
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public:
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bool getSuccess() const { return m_success; }
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bool getActive() const { return m_active; }
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uint32_t getFifoFilledCount() const { return m_fifoFilledCount; }
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uint32_t getFifoSize() const { return m_fifoSize; }
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uint32_t getUnderrun() const { return m_underrun; }
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uint32_t getOverrun() const { return m_overrun; }
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uint32_t getDroppedPackets() const { return m_droppedPackets; }
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float getLinkRate() const { return m_linkRate; }
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uint64_t getTimestamp() const { return m_timestamp; }
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static MsgReportStreamInfo* create(
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bool success,
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bool active,
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uint32_t fifoFilledCount,
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uint32_t fifoSize,
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uint32_t underrun,
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uint32_t overrun,
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uint32_t droppedPackets,
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float linkRate,
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uint64_t timestamp
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)
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{
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return new MsgReportStreamInfo(
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success,
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active,
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fifoFilledCount,
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fifoSize,
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underrun,
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overrun,
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droppedPackets,
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linkRate,
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timestamp
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);
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}
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private:
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bool m_success;
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// everything from lms_stream_status_t
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bool m_active; //!< Indicates whether the stream is currently active
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uint32_t m_fifoFilledCount; //!< Number of samples in FIFO buffer
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uint32_t m_fifoSize; //!< Size of FIFO buffer
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uint32_t m_underrun; //!< FIFO underrun count
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uint32_t m_overrun; //!< FIFO overrun count
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uint32_t m_droppedPackets; //!< Number of dropped packets by HW
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float m_linkRate; //!< Combined data rate of all stream of the same direction (TX or RX)
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uint64_t m_timestamp; //!< Current HW timestamp
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MsgReportStreamInfo(
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bool success,
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bool active,
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uint32_t fifoFilledCount,
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uint32_t fifoSize,
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uint32_t underrun,
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uint32_t overrun,
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uint32_t droppedPackets,
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float linkRate,
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uint64_t timestamp
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) :
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Message(),
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m_success(success),
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m_active(active),
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m_fifoFilledCount(fifoFilledCount),
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m_fifoSize(fifoSize),
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m_underrun(underrun),
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m_overrun(overrun),
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m_droppedPackets(droppedPackets),
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m_linkRate(linkRate),
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m_timestamp(timestamp)
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{ }
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};
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class MsgStartStop : public Message {
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MESSAGE_CLASS_DECLARATION
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public:
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bool getStartStop() const { return m_startStop; }
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bool getRxElseTx() const { return m_rxElseTx; }
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static MsgStartStop* create(bool startStop, bool rxElseTx) {
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return new MsgStartStop(startStop, rxElseTx);
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}
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protected:
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bool m_startStop;
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bool m_rxElseTx;
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MsgStartStop(bool startStop, bool rxElseTx) :
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Message(),
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m_startStop(startStop),
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m_rxElseTx(rxElseTx)
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{ }
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};
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LimeSDRMIMO(DeviceAPI *deviceAPI);
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virtual ~LimeSDRMIMO();
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virtual void destroy();
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virtual void init();
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virtual bool startRx();
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virtual void stopRx();
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virtual bool startTx();
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virtual void stopTx();
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virtual QByteArray serialize() const;
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virtual bool deserialize(const QByteArray& data);
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virtual void setMessageQueueToGUI(MessageQueue *queue) { m_guiMessageQueue = queue; }
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virtual const QString& getDeviceDescription() const;
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virtual int getSourceSampleRate(int index) const;
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virtual void setSourceSampleRate(int sampleRate, int index) { (void) sampleRate; (void) index; }
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virtual quint64 getSourceCenterFrequency(int index) const;
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virtual void setSourceCenterFrequency(qint64 centerFrequency, int index);
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virtual int getSinkSampleRate(int index) const;
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virtual void setSinkSampleRate(int sampleRate, int index) { (void) sampleRate; (void) index; }
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virtual quint64 getSinkCenterFrequency(int index) const;
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virtual void setSinkCenterFrequency(qint64 centerFrequency, int index);
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virtual quint64 getMIMOCenterFrequency() const { return getSourceCenterFrequency(0); }
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virtual unsigned int getMIMOSampleRate() const { return getSourceSampleRate(0); }
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virtual bool handleMessage(const Message& message);
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virtual int webapiSettingsGet(
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SWGSDRangel::SWGDeviceSettings& response,
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QString& errorMessage);
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virtual int webapiSettingsPutPatch(
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bool force,
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const QStringList& deviceSettingsKeys,
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SWGSDRangel::SWGDeviceSettings& response, // query + response
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QString& errorMessage);
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virtual int webapiReportGet(
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SWGSDRangel::SWGDeviceReport& response,
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QString& errorMessage);
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virtual int webapiRunGet(
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int subsystemIndex,
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SWGSDRangel::SWGDeviceState& response,
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QString& errorMessage);
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virtual int webapiRun(
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bool run,
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int subsystemIndex,
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SWGSDRangel::SWGDeviceState& response,
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QString& errorMessage);
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static void webapiFormatDeviceSettings(
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SWGSDRangel::SWGDeviceSettings& response,
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const LimeSDRMIMOSettings& settings);
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static void webapiUpdateDeviceSettings(
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LimeSDRMIMOSettings& settings,
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const QStringList& deviceSettingsKeys,
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SWGSDRangel::SWGDeviceSettings& response);
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bool isRecording(unsigned int istream) const { (void) istream; return false; }
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void getRxFrequencyRange(uint64_t& min, uint64_t& max, int& step);
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void getRxSampleRateRange(int& min, int& max, int& step);
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void getRxLPFRange(int& min, int& max, int& step);
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void getTxFrequencyRange(uint64_t& min, uint64_t& max, int& step);
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void getTxSampleRateRange(int& min, int& max, int& step);
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void getTxLPFRange(int& min, int& max, int& step);
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bool getRxRunning() const { return m_runningRx; }
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bool getTxRunning() const { return m_runningTx; }
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private:
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DeviceAPI *m_deviceAPI;
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QMutex m_mutex;
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LimeSDRMIMOSettings m_settings;
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LimeSDRMIThread* m_sourceThread;
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LimeSDRMOThread* m_sinkThread;
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QString m_deviceDescription;
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bool m_runningRx;
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bool m_runningTx;
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QNetworkAccessManager *m_networkManager;
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QNetworkRequest m_networkRequest;
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DeviceLimeSDRParams *m_deviceParams;
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bool m_rxChannelEnabled[2];
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bool m_txChannelEnabled[2];
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lms_stream_t m_rxStreams[2];
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bool m_rxStreamStarted[2];
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lms_stream_t m_txStreams[2];
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bool m_txStreamStarted[2];
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bool m_open;
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bool openDevice();
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void closeDevice();
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bool setupRxStream(unsigned int channel);
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void destroyRxStream(unsigned int channel);
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bool setupTxStream(unsigned int channel);
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void destroyTxStream(unsigned int channel);
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bool applySettings(const LimeSDRMIMOSettings& settings, const QList<QString>& settingsKeys, bool force);
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void applyRxGainMode(
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unsigned int channel,
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bool& doCalibration,
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LimeSDRMIMOSettings::RxGainMode gainMode,
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uint32_t gain,
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uint32_t lnaGain,
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uint32_t tiaGain,
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uint32_t pgaGain
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);
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void applyRxGain(unsigned int channel, bool& doCalibration, uint32_t gain);
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void applyRxLNAGain(unsigned int channel, bool& doCalibration, uint32_t lnaGain);
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void applyRxTIAGain(unsigned int channel, bool& doCalibration, uint32_t tiaGain);
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void applyRxPGAGain(unsigned int channel, bool& doCalibration, uint32_t pgaGain);
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void applyRxLPFIRBW(unsigned int channel, bool lpfFIREnable, float lpfFIRBW);
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void applyRxNCOFrequency(unsigned int channel, bool ncoEnable, int ncoFrequency);
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void applyRxAntennaPath(unsigned int channel, bool& doCalibration, LimeSDRMIMOSettings::PathRxRFE path);
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void applyRxCalibration(unsigned int channel, qint32 devSampleRate);
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void applyRxLPCalibration(unsigned int channel, float lpfBW);
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void applyTxGain(unsigned int channel, bool& doCalibration, uint32_t gain);
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void applyTxLPFIRBW(unsigned int channel, bool lpfFIREnable, float lpfFIRBW);
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void applyTxNCOFrequency(unsigned int channel, bool ncoEnable, int ncoFrequency);
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void applyTxAntennaPath(unsigned int channel, bool& doCalibration, LimeSDRMIMOSettings::PathTxRFE path);
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bool setRxDeviceCenterFrequency(struct bladerf *dev, quint64 freq_hz, int loPpmTenths);
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bool setTxDeviceCenterFrequency(struct bladerf *dev, quint64 freq_hz, int loPpmTenths);
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void applyTxCalibration(unsigned int channel, qint32 devSampleRate);
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void applyTxLPCalibration(unsigned int channel, float lpfBW);
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void webapiFormatDeviceReport(SWGSDRangel::SWGDeviceReport& response);
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void webapiReverseSendSettings(const QList<QString>& deviceSettingsKeys, const LimeSDRMIMOSettings& settings, bool force);
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void webapiReverseSendStartStop(bool start);
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private slots:
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void networkManagerFinished(QNetworkReply *reply);
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};
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#endif // PLUGINS_SAMPLEMIMO_LIMESDRMIMO_LIMESDRMIMO_H_
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