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https://github.com/30hours/blah2.git
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Merge pull request #15 from 30hours/sdn-ninja-sdn-ninja-hackrf-fixes
Sdn ninja sdn ninja hackrf fixes
This commit is contained in:
commit
bf29d1431f
4 changed files with 60 additions and 50 deletions
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@ -4,16 +4,15 @@ capture:
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device:
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type: "HackRF"
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serial:
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- "FIRST_DEVICE_SERIAL_NUMBER"
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- "SECOND_DEVICE_SERIAL_NUMBER"
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- "REFERENCE_DEVICE_SERIAL_NUMBER"
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- "SURVILLANCE_DEVICE_SERIAL_NUMBER"
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gain_lna: [32, 32]
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gain_vga: [30, 30]
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amp_enable: [false, false]
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replay:
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state: false
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loop: true
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file: '/opt/blah2/replay/file.rspduo'
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file: '/opt/blah2/replay/file.hackrf'
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process:
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data:
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@ -94,23 +94,28 @@ std::unique_ptr<Source> Capture::factory_source(const std::string& type, c4::yml
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else if (type == VALID_TYPE[2])
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{
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std::vector<std::string> serial;
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std::vector<uint8_t> gainLna, gainVga;
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std::vector<uint32_t> gainLna, gainVga;
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std::vector<bool> ampEnable;
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std::string _serial;
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uint8_t _gainLna, _gainVga;
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uint32_t gain;
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int _gain;
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bool _ampEnable;
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config["serial"][0] >> _serial;
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serial.push_back(_serial);
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config["serial"][1] >> _serial;
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serial.push_back(_serial);
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config["gain_lna"][0] >> _gainLna;
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gainLna.push_back(_gainLna);
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config["gain_lna"][1] >> _gainLna;
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gainLna.push_back(_gainLna);
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config["gain_vga"][0] >> _gainVga;
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gainVga.push_back(_gainVga);
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config["gain_vga"][1] >> _gainVga;
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gainVga.push_back(_gainVga);
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config["gain_lna"][0] >> _gain;
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gain = static_cast<uint32_t> (_gain);
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gainLna.push_back(gain);
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config["gain_lna"][1] >> _gain;
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gain = static_cast<uint32_t>(_gain);
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gainLna.push_back(gain);
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config["gain_vga"][0] >> _gain;
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gain = static_cast<uint32_t>(_gain);
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gainVga.push_back(gain);
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config["gain_vga"][1] >> _gain;
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gain = static_cast<uint32_t>(_gain);
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gainVga.push_back(gain);
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config["amp_enable"][0] >> _ampEnable;
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ampEnable.push_back(_ampEnable);
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config["amp_enable"][1] >> _ampEnable;
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@ -8,7 +8,7 @@
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// constructor
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HackRf::HackRf(std::string _type, uint32_t _fc, uint32_t _fs,
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std::string _path, bool *_saveIq, std::vector<std::string> _serial,
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std::vector<uint8_t> _gainLna, std::vector<uint8_t> _gainVga,
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std::vector<uint32_t> _gainLna, std::vector<uint32_t> _gainVga,
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std::vector<bool> _ampEnable)
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: Source(_type, _fc, _fs, _path, _saveIq)
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{
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@ -16,11 +16,11 @@ HackRf::HackRf(std::string _type, uint32_t _fc, uint32_t _fs,
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ampEnable = _ampEnable;
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// validate LNA gain
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std::unordered_set<uint8_t> validLna;
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for (uint8_t gain = 0; gain <= 40; gain += 8) {
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std::unordered_set<uint32_t> validLna;
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for (uint32_t gain = 0; gain <= 40; gain += 8) {
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validLna.insert(gain);
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}
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for (uint8_t gain : _gainLna) {
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for (uint32_t gain : _gainLna) {
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if (validLna.find(gain) == validLna.end()) {
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throw std::invalid_argument("Invalid LNA gain value");
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}
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@ -28,11 +28,11 @@ HackRf::HackRf(std::string _type, uint32_t _fc, uint32_t _fs,
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gainLna = _gainLna;
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// validate VGA gain
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std::unordered_set<uint8_t> validVga;
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for (uint8_t gain = 0; gain <= 62; gain += 2) {
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std::unordered_set<uint32_t> validVga;
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for (uint32_t gain = 0; gain <= 62; gain += 2) {
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validVga.insert(gain);
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}
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for (uint8_t gain : _gainVga) {
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for (uint32_t gain : _gainVga) {
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if (validVga.find(gain) == validVga.end()) {
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throw std::invalid_argument("Invalid LNA gain value");
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}
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@ -56,25 +56,11 @@ void HackRf::start()
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check_status(status, "Failed to initialise HackRF");
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hackrf_device_list_t *list;
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list = hackrf_device_list();
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if (list->devicecount < 2)
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if (!list || list->devicecount < 2)
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{
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check_status(-1, "Failed to find 2 HackRF devices.");
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}
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// reference config
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status = hackrf_open_by_serial(serial[0].c_str(), &dev[0]);
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check_status(status, "Failed to open device.");
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status = hackrf_set_freq(dev[0], fc);
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check_status(status, "Failed to set frequency.");
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status = hackrf_set_sample_rate(dev[0], fs);
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check_status(status, "Failed to set sample rate.");
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status = hackrf_set_amp_enable(dev[0], ampEnable[0] ? 1 : 0);
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check_status(status, "Failed to set AMP status.");
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status = hackrf_set_lna_gain(dev[0], gainLna[0]);
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check_status(status, "Failed to set LNA gain.");
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status = hackrf_set_vga_gain(dev[0], gainVga[0]);
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check_status(status, "Failed to set VGA gain.");
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// surveillance config
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status = hackrf_open_by_serial(serial[1].c_str(), &dev[1]);
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check_status(status, "Failed to open device.");
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@ -90,6 +76,20 @@ void HackRf::start()
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check_status(status, "Failed to set VGA gain.");
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status = hackrf_set_hw_sync_mode(dev[1], 1);
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check_status(status, "Failed to enable hardware synchronising.");
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// reference config
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status = hackrf_open_by_serial(serial[0].c_str(), &dev[0]);
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check_status(status, "Failed to open device.");
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status = hackrf_set_freq(dev[0], fc);
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check_status(status, "Failed to set frequency.");
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status = hackrf_set_sample_rate(dev[0], fs);
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check_status(status, "Failed to set sample rate.");
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status = hackrf_set_amp_enable(dev[0], ampEnable[0] ? 1 : 0);
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check_status(status, "Failed to set AMP status.");
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status = hackrf_set_lna_gain(dev[0], gainLna[0]);
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check_status(status, "Failed to set LNA gain.");
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status = hackrf_set_vga_gain(dev[0], gainVga[0]);
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check_status(status, "Failed to set VGA gain.");
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}
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void HackRf::stop()
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@ -104,10 +104,14 @@ void HackRf::stop()
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void HackRf::process(IqData *buffer1, IqData *buffer2)
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{
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int status;
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status = hackrf_start_rx(dev[1], &rx_callback, buffer2);
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check_status(status, "Failed to start RX streaming.");
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status = hackrf_start_rx(dev[0], &rx_callback, buffer1);
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check_status(status, "Failed to start RX streaming.");
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while (true)
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{
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status = hackrf_start_rx(dev[1], rx_callback, buffer2);
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check_status(status, "Failed to start RX streaming.");
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status = hackrf_start_rx(dev[0], rx_callback, buffer1);
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check_status(status, "Failed to start RX streaming.");
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}
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}
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int HackRf::rx_callback(hackrf_transfer* transfer)
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@ -116,14 +120,14 @@ int HackRf::rx_callback(hackrf_transfer* transfer)
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int8_t* buffer_hackrf = (int8_t*) transfer->buffer;
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buffer_blah2->lock();
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for (size_t i = 0; i < transfer->valid_length; i+2)
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for (size_t i = 0; i < transfer->buffer_length; i=i+2)
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{
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double iqi = static_cast<double>(buffer_hackrf[i]);
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double iqq = static_cast<double>(buffer_hackrf[i+1]);
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buffer_blah2->push_back({iqi, iqq});
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}
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buffer_blah2->unlock();
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return 0;
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@ -133,3 +137,4 @@ void HackRf::replay(IqData *buffer1, IqData *buffer2, std::string _file, bool _l
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{
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return;
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}
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@ -25,22 +25,23 @@ private:
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std::vector<std::string> serial;
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/// @brief RX LNA (IF) gain, 0-40dB, 8dB steps.
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std::vector<uint8_t> gainLna;
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std::vector<uint32_t> gainLna;
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/// @brief RX VGA (baseband) gain, 0-62dB, 2dB steps.
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std::vector<uint8_t> gainVga;
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std::vector<uint32_t> gainVga;
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/// @brief Enable extra amplifier U13 on receive.
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std::vector<bool> ampEnable;
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/// @brief Vector of pointers to HackRF devices.
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std::vector<hackrf_device*> dev;
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/// @brief Check status of HackRF API returns.
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/// @param status Return code of API call.
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/// @param message Message if API call error.
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void check_status(uint8_t status, std::string message);
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protected:
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/// @brief Array of pointers to HackRF devices.
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hackrf_device* dev[2];
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/// @brief Callback function for HackRF samples.
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/// @param transfer HackRF transfer object.
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/// @return Void.
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@ -54,7 +55,7 @@ public:
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/// @return The object.
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HackRf(std::string type, uint32_t fc, uint32_t fs, std::string path,
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bool *saveIq, std::vector<std::string> serial,
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std::vector<uint8_t> gainLna, std::vector<uint8_t> gainVga,
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std::vector<uint32_t> gainLna, std::vector<uint32_t> gainVga,
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std::vector<bool> ampEnable);
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/// @brief Implement capture function on HackRF.
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@ -81,4 +82,4 @@ public:
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};
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#endif
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#endif
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