mirror of
https://github.com/f4exb/sdrangel.git
synced 2024-09-28 15:56:33 -04:00
546 lines
15 KiB
C++
546 lines
15 KiB
C++
/**
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* SDRangel
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* This is the web REST/JSON API of SDRangel SDR software. SDRangel is an Open Source Qt5/OpenGL 3.0+ (4.3+ in Windows) GUI and server Software Defined Radio and signal analyzer in software. It supports Airspy, BladeRF, HackRF, LimeSDR, PlutoSDR, RTL-SDR, SDRplay RSP1 and FunCube --- Limitations and specifcities: * In SDRangel GUI the first Rx device set cannot be deleted. Conversely the server starts with no device sets and its number of device sets can be reduced to zero by as many calls as necessary to /sdrangel/deviceset with DELETE method. * Preset import and export from/to file is a server only feature. * Device set focus is a GUI only feature. * The following channels are not implemented (status 501 is returned): ATV and DATV demodulators, Channel Analyzer NG, LoRa demodulator * The device settings and report structures contains only the sub-structure corresponding to the device type. The DeviceSettings and DeviceReport structures documented here shows all of them but only one will be or should be present at a time * The channel settings and report structures contains only the sub-structure corresponding to the channel type. The ChannelSettings and ChannelReport structures documented here shows all of them but only one will be or should be present at a time ---
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*
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* OpenAPI spec version: 6.0.0
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* Contact: f4exb06@gmail.com
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*
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* NOTE: This class is auto generated by the swagger code generator program.
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* https://github.com/swagger-api/swagger-codegen.git
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* Do not edit the class manually.
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*/
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#include "SWGLimeSdrMIMOReport.h"
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#include "SWGHelpers.h"
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#include <QJsonDocument>
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#include <QJsonArray>
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#include <QObject>
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#include <QDebug>
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namespace SWGSDRangel {
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SWGLimeSdrMIMOReport::SWGLimeSdrMIMOReport(QString* json) {
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init();
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this->fromJson(*json);
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}
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SWGLimeSdrMIMOReport::SWGLimeSdrMIMOReport() {
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hw_timestamp = 0L;
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m_hw_timestamp_isSet = false;
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temperature = 0.0f;
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m_temperature_isSet = false;
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gpio_dir = 0;
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m_gpio_dir_isSet = false;
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gpio_pins = 0;
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m_gpio_pins_isSet = false;
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success_rx = 0;
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m_success_rx_isSet = false;
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stream_active_rx = 0;
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m_stream_active_rx_isSet = false;
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fifo_size_rx = 0;
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m_fifo_size_rx_isSet = false;
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fifo_fill_rx = 0;
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m_fifo_fill_rx_isSet = false;
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underrun_count_rx = 0;
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m_underrun_count_rx_isSet = false;
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overrun_count_rx = 0;
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m_overrun_count_rx_isSet = false;
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dropped_packets_count_rx = 0;
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m_dropped_packets_count_rx_isSet = false;
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link_rate_rx = 0.0f;
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m_link_rate_rx_isSet = false;
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success_tx = 0;
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m_success_tx_isSet = false;
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stream_active_tx = 0;
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m_stream_active_tx_isSet = false;
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fifo_size_tx = 0;
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m_fifo_size_tx_isSet = false;
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fifo_fill_tx = 0;
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m_fifo_fill_tx_isSet = false;
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underrun_count_tx = 0;
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m_underrun_count_tx_isSet = false;
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overrun_count_tx = 0;
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m_overrun_count_tx_isSet = false;
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dropped_packets_count_tx = 0;
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m_dropped_packets_count_tx_isSet = false;
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link_rate_tx = 0.0f;
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m_link_rate_tx_isSet = false;
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}
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SWGLimeSdrMIMOReport::~SWGLimeSdrMIMOReport() {
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this->cleanup();
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}
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void
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SWGLimeSdrMIMOReport::init() {
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hw_timestamp = 0L;
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m_hw_timestamp_isSet = false;
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temperature = 0.0f;
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m_temperature_isSet = false;
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gpio_dir = 0;
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m_gpio_dir_isSet = false;
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gpio_pins = 0;
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m_gpio_pins_isSet = false;
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success_rx = 0;
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m_success_rx_isSet = false;
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stream_active_rx = 0;
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m_stream_active_rx_isSet = false;
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fifo_size_rx = 0;
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m_fifo_size_rx_isSet = false;
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fifo_fill_rx = 0;
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m_fifo_fill_rx_isSet = false;
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underrun_count_rx = 0;
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m_underrun_count_rx_isSet = false;
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overrun_count_rx = 0;
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m_overrun_count_rx_isSet = false;
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dropped_packets_count_rx = 0;
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m_dropped_packets_count_rx_isSet = false;
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link_rate_rx = 0.0f;
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m_link_rate_rx_isSet = false;
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success_tx = 0;
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m_success_tx_isSet = false;
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stream_active_tx = 0;
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m_stream_active_tx_isSet = false;
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fifo_size_tx = 0;
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m_fifo_size_tx_isSet = false;
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fifo_fill_tx = 0;
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m_fifo_fill_tx_isSet = false;
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underrun_count_tx = 0;
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m_underrun_count_tx_isSet = false;
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overrun_count_tx = 0;
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m_overrun_count_tx_isSet = false;
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dropped_packets_count_tx = 0;
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m_dropped_packets_count_tx_isSet = false;
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link_rate_tx = 0.0f;
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m_link_rate_tx_isSet = false;
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}
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void
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SWGLimeSdrMIMOReport::cleanup() {
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}
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SWGLimeSdrMIMOReport*
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SWGLimeSdrMIMOReport::fromJson(QString &json) {
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QByteArray array (json.toStdString().c_str());
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QJsonDocument doc = QJsonDocument::fromJson(array);
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QJsonObject jsonObject = doc.object();
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this->fromJsonObject(jsonObject);
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return this;
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}
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void
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SWGLimeSdrMIMOReport::fromJsonObject(QJsonObject &pJson) {
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::SWGSDRangel::setValue(&hw_timestamp, pJson["hwTimestamp"], "qint64", "");
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::SWGSDRangel::setValue(&temperature, pJson["temperature"], "float", "");
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::SWGSDRangel::setValue(&gpio_dir, pJson["gpioDir"], "qint32", "");
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::SWGSDRangel::setValue(&gpio_pins, pJson["gpioPins"], "qint32", "");
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::SWGSDRangel::setValue(&success_rx, pJson["successRx"], "qint32", "");
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::SWGSDRangel::setValue(&stream_active_rx, pJson["streamActiveRx"], "qint32", "");
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::SWGSDRangel::setValue(&fifo_size_rx, pJson["fifoSizeRx"], "qint32", "");
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::SWGSDRangel::setValue(&fifo_fill_rx, pJson["fifoFillRx"], "qint32", "");
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::SWGSDRangel::setValue(&underrun_count_rx, pJson["underrunCountRx"], "qint32", "");
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::SWGSDRangel::setValue(&overrun_count_rx, pJson["overrunCountRx"], "qint32", "");
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::SWGSDRangel::setValue(&dropped_packets_count_rx, pJson["droppedPacketsCountRx"], "qint32", "");
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::SWGSDRangel::setValue(&link_rate_rx, pJson["linkRateRx"], "float", "");
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::SWGSDRangel::setValue(&success_tx, pJson["successTx"], "qint32", "");
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::SWGSDRangel::setValue(&stream_active_tx, pJson["streamActiveTx"], "qint32", "");
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::SWGSDRangel::setValue(&fifo_size_tx, pJson["fifoSizeTx"], "qint32", "");
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::SWGSDRangel::setValue(&fifo_fill_tx, pJson["fifoFillTx"], "qint32", "");
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::SWGSDRangel::setValue(&underrun_count_tx, pJson["underrunCountTx"], "qint32", "");
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::SWGSDRangel::setValue(&overrun_count_tx, pJson["overrunCountTx"], "qint32", "");
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::SWGSDRangel::setValue(&dropped_packets_count_tx, pJson["droppedPacketsCountTx"], "qint32", "");
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::SWGSDRangel::setValue(&link_rate_tx, pJson["linkRateTx"], "float", "");
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}
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QString
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SWGLimeSdrMIMOReport::asJson ()
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{
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QJsonObject* obj = this->asJsonObject();
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QJsonDocument doc(*obj);
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QByteArray bytes = doc.toJson();
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delete obj;
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return QString(bytes);
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}
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QJsonObject*
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SWGLimeSdrMIMOReport::asJsonObject() {
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QJsonObject* obj = new QJsonObject();
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if(m_hw_timestamp_isSet){
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obj->insert("hwTimestamp", QJsonValue(hw_timestamp));
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}
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if(m_temperature_isSet){
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obj->insert("temperature", QJsonValue(temperature));
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}
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if(m_gpio_dir_isSet){
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obj->insert("gpioDir", QJsonValue(gpio_dir));
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}
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if(m_gpio_pins_isSet){
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obj->insert("gpioPins", QJsonValue(gpio_pins));
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}
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if(m_success_rx_isSet){
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obj->insert("successRx", QJsonValue(success_rx));
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}
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if(m_stream_active_rx_isSet){
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obj->insert("streamActiveRx", QJsonValue(stream_active_rx));
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}
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if(m_fifo_size_rx_isSet){
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obj->insert("fifoSizeRx", QJsonValue(fifo_size_rx));
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}
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if(m_fifo_fill_rx_isSet){
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obj->insert("fifoFillRx", QJsonValue(fifo_fill_rx));
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}
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if(m_underrun_count_rx_isSet){
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obj->insert("underrunCountRx", QJsonValue(underrun_count_rx));
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}
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if(m_overrun_count_rx_isSet){
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obj->insert("overrunCountRx", QJsonValue(overrun_count_rx));
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}
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if(m_dropped_packets_count_rx_isSet){
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obj->insert("droppedPacketsCountRx", QJsonValue(dropped_packets_count_rx));
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}
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if(m_link_rate_rx_isSet){
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obj->insert("linkRateRx", QJsonValue(link_rate_rx));
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}
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if(m_success_tx_isSet){
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obj->insert("successTx", QJsonValue(success_tx));
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}
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if(m_stream_active_tx_isSet){
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obj->insert("streamActiveTx", QJsonValue(stream_active_tx));
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}
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if(m_fifo_size_tx_isSet){
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obj->insert("fifoSizeTx", QJsonValue(fifo_size_tx));
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}
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if(m_fifo_fill_tx_isSet){
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obj->insert("fifoFillTx", QJsonValue(fifo_fill_tx));
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}
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if(m_underrun_count_tx_isSet){
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obj->insert("underrunCountTx", QJsonValue(underrun_count_tx));
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}
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if(m_overrun_count_tx_isSet){
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obj->insert("overrunCountTx", QJsonValue(overrun_count_tx));
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}
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if(m_dropped_packets_count_tx_isSet){
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obj->insert("droppedPacketsCountTx", QJsonValue(dropped_packets_count_tx));
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}
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if(m_link_rate_tx_isSet){
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obj->insert("linkRateTx", QJsonValue(link_rate_tx));
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}
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return obj;
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}
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qint64
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SWGLimeSdrMIMOReport::getHwTimestamp() {
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return hw_timestamp;
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}
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void
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SWGLimeSdrMIMOReport::setHwTimestamp(qint64 hw_timestamp) {
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this->hw_timestamp = hw_timestamp;
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this->m_hw_timestamp_isSet = true;
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}
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float
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SWGLimeSdrMIMOReport::getTemperature() {
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return temperature;
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}
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void
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SWGLimeSdrMIMOReport::setTemperature(float temperature) {
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this->temperature = temperature;
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this->m_temperature_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getGpioDir() {
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return gpio_dir;
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}
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void
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SWGLimeSdrMIMOReport::setGpioDir(qint32 gpio_dir) {
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this->gpio_dir = gpio_dir;
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this->m_gpio_dir_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getGpioPins() {
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return gpio_pins;
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}
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void
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SWGLimeSdrMIMOReport::setGpioPins(qint32 gpio_pins) {
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this->gpio_pins = gpio_pins;
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this->m_gpio_pins_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getSuccessRx() {
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return success_rx;
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}
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void
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SWGLimeSdrMIMOReport::setSuccessRx(qint32 success_rx) {
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this->success_rx = success_rx;
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this->m_success_rx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getStreamActiveRx() {
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return stream_active_rx;
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}
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void
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SWGLimeSdrMIMOReport::setStreamActiveRx(qint32 stream_active_rx) {
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this->stream_active_rx = stream_active_rx;
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this->m_stream_active_rx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getFifoSizeRx() {
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return fifo_size_rx;
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}
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void
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SWGLimeSdrMIMOReport::setFifoSizeRx(qint32 fifo_size_rx) {
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this->fifo_size_rx = fifo_size_rx;
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this->m_fifo_size_rx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getFifoFillRx() {
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return fifo_fill_rx;
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}
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void
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SWGLimeSdrMIMOReport::setFifoFillRx(qint32 fifo_fill_rx) {
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this->fifo_fill_rx = fifo_fill_rx;
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this->m_fifo_fill_rx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getUnderrunCountRx() {
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return underrun_count_rx;
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}
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void
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SWGLimeSdrMIMOReport::setUnderrunCountRx(qint32 underrun_count_rx) {
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this->underrun_count_rx = underrun_count_rx;
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this->m_underrun_count_rx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getOverrunCountRx() {
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return overrun_count_rx;
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}
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void
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SWGLimeSdrMIMOReport::setOverrunCountRx(qint32 overrun_count_rx) {
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this->overrun_count_rx = overrun_count_rx;
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this->m_overrun_count_rx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getDroppedPacketsCountRx() {
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return dropped_packets_count_rx;
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}
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void
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SWGLimeSdrMIMOReport::setDroppedPacketsCountRx(qint32 dropped_packets_count_rx) {
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this->dropped_packets_count_rx = dropped_packets_count_rx;
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this->m_dropped_packets_count_rx_isSet = true;
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}
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float
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SWGLimeSdrMIMOReport::getLinkRateRx() {
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return link_rate_rx;
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}
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void
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SWGLimeSdrMIMOReport::setLinkRateRx(float link_rate_rx) {
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this->link_rate_rx = link_rate_rx;
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this->m_link_rate_rx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getSuccessTx() {
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return success_tx;
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}
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void
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SWGLimeSdrMIMOReport::setSuccessTx(qint32 success_tx) {
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this->success_tx = success_tx;
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this->m_success_tx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getStreamActiveTx() {
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return stream_active_tx;
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}
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void
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SWGLimeSdrMIMOReport::setStreamActiveTx(qint32 stream_active_tx) {
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this->stream_active_tx = stream_active_tx;
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this->m_stream_active_tx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getFifoSizeTx() {
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return fifo_size_tx;
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}
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void
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SWGLimeSdrMIMOReport::setFifoSizeTx(qint32 fifo_size_tx) {
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this->fifo_size_tx = fifo_size_tx;
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this->m_fifo_size_tx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getFifoFillTx() {
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return fifo_fill_tx;
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}
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void
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SWGLimeSdrMIMOReport::setFifoFillTx(qint32 fifo_fill_tx) {
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this->fifo_fill_tx = fifo_fill_tx;
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this->m_fifo_fill_tx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getUnderrunCountTx() {
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return underrun_count_tx;
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}
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void
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SWGLimeSdrMIMOReport::setUnderrunCountTx(qint32 underrun_count_tx) {
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this->underrun_count_tx = underrun_count_tx;
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this->m_underrun_count_tx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getOverrunCountTx() {
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return overrun_count_tx;
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}
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void
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SWGLimeSdrMIMOReport::setOverrunCountTx(qint32 overrun_count_tx) {
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this->overrun_count_tx = overrun_count_tx;
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this->m_overrun_count_tx_isSet = true;
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}
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qint32
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SWGLimeSdrMIMOReport::getDroppedPacketsCountTx() {
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return dropped_packets_count_tx;
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}
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void
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SWGLimeSdrMIMOReport::setDroppedPacketsCountTx(qint32 dropped_packets_count_tx) {
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this->dropped_packets_count_tx = dropped_packets_count_tx;
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this->m_dropped_packets_count_tx_isSet = true;
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}
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float
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SWGLimeSdrMIMOReport::getLinkRateTx() {
|
|
return link_rate_tx;
|
|
}
|
|
void
|
|
SWGLimeSdrMIMOReport::setLinkRateTx(float link_rate_tx) {
|
|
this->link_rate_tx = link_rate_tx;
|
|
this->m_link_rate_tx_isSet = true;
|
|
}
|
|
|
|
|
|
bool
|
|
SWGLimeSdrMIMOReport::isSet(){
|
|
bool isObjectUpdated = false;
|
|
do{
|
|
if(m_hw_timestamp_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_temperature_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_gpio_dir_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_gpio_pins_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_success_rx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_stream_active_rx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_fifo_size_rx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_fifo_fill_rx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_underrun_count_rx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_overrun_count_rx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_dropped_packets_count_rx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_link_rate_rx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_success_tx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_stream_active_tx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_fifo_size_tx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_fifo_fill_tx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_underrun_count_tx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_overrun_count_tx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_dropped_packets_count_tx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
if(m_link_rate_tx_isSet){
|
|
isObjectUpdated = true; break;
|
|
}
|
|
}while(false);
|
|
return isObjectUpdated;
|
|
}
|
|
}
|
|
|