/* -*- c++ -*- */ /* * Copyright 2013-2017 Nuand LLC * Copyright 2013 Dimitri Stolnikov * * GNU Radio is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 3, or (at your option) * any later version. * * GNU Radio is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with GNU Radio; see the file COPYING. If not, write to * the Free Software Foundation, Inc., 51 Franklin Street, * Boston, MA 02110-1301, USA. */ #ifndef INCLUDED_BLADERF_SOURCE_C_H #define INCLUDED_BLADERF_SOURCE_C_H #include #include "source_iface.h" #include "bladerf_common.h" #include "osmosdr/ranges.h" class bladerf_source_c; /* * We use std::shared_ptr's instead of raw pointers for all access * to gr_blocks (and many other data structures). The shared_ptr gets * us transparent reference counting, which greatly simplifies storage * management issues. This is especially helpful in our hybrid * C++ / Python system. * * See http://www.boost.org/libs/smart_ptr/smart_ptr.htm * * As a convention, the _sptr suffix indicates a std::shared_ptr */ typedef std::shared_ptr bladerf_source_c_sptr; /*! * \brief Return a shared_ptr to a new instance of bladerf_source_c. * * To avoid accidental use of raw pointers, bladerf_source_c's * constructor is private. bladerf_make_source_c is the public * interface for creating new instances. */ bladerf_source_c_sptr make_bladerf_source_c(const std::string &args = ""); class bladerf_source_c : public gr::sync_block, public source_iface, protected bladerf_common { private: // The friend declaration allows bladerf_make_source_c to // access the private constructor. friend bladerf_source_c_sptr make_bladerf_source_c(const std::string &args); bladerf_source_c(const std::string &args); bool is_antenna_valid(const std::string &antenna); public: std::string name(); static std::vector get_devices(); size_t get_max_channels(void); size_t get_num_channels(void); bool start(); bool stop(); int work(int noutput_items, gr_vector_const_void_star &input_items, gr_vector_void_star &output_items); osmosdr::meta_range_t get_sample_rates(void); double set_sample_rate(double rate); double get_sample_rate(void); osmosdr::freq_range_t get_freq_range(size_t chan = 0); double set_center_freq(double freq, size_t chan = 0); double get_center_freq(size_t chan = 0); double set_freq_corr(double ppm, size_t chan = 0); double get_freq_corr(size_t chan = 0); std::vector get_gain_names(size_t chan = 0); osmosdr::gain_range_t get_gain_range(size_t chan = 0); osmosdr::gain_range_t get_gain_range(const std::string &name, size_t chan = 0); bool set_gain_mode(bool automatic, size_t chan = 0); bool get_gain_mode(size_t chan = 0); double set_gain(double gain, size_t chan = 0); double set_gain(double gain, const std::string &name, size_t chan = 0); double get_gain(size_t chan = 0); double get_gain(const std::string &name, size_t chan = 0); std::vector get_antennas(size_t chan = 0); std::string set_antenna(const std::string &antenna, size_t chan = 0); std::string get_antenna(size_t chan = 0); void set_dc_offset_mode(int mode, size_t chan = 0); void set_dc_offset(const std::complex &offset, size_t chan = 0); void set_iq_balance_mode(int mode, size_t chan = 0); void set_iq_balance(const std::complex &balance, size_t chan = 0); osmosdr::freq_range_t get_bandwidth_range(size_t chan = 0); double set_bandwidth(double bandwidth, size_t chan = 0); double get_bandwidth(size_t chan = 0); std::vector get_clock_sources(size_t mboard); void set_clock_source(const std::string &source, size_t mboard = 0); std::string get_clock_source(size_t mboard); void set_biastee_mode(const std::string &mode); void set_loopback_mode(const std::string &loopback); void set_rx_mux_mode(const std::string &rxmux); void set_agc_mode(const std::string &agcmode); private: // Sample-handling buffers int16_t *_16icbuf; /**< raw samples from bladeRF */ gr_complex *_32fcbuf; /**< intermediate buffer to gnuradio */ bool _running; /**< is the source running? */ bladerf_channel_layout _layout; /**< channel layout */ bladerf_gain_mode _agcmode; /**< gain mode when AGC is enabled */ gr::thread::mutex d_mutex; /**< mutex to protect set/work access */ /* Scaling factor used when converting from int16_t to float */ const float SCALING_FACTOR = 2048.0f; }; #endif // INCLUDED_BLADERF_SOURCE_C_H