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https://github.com/gnss-sdr/gnss-sdr
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The switch bug is solved. Now the switch uses an absolute sample counter
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@ -1,12 +1,13 @@
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/*!
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* \file gnss_sdr_fpga_sample_counter.cc
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* \brief Simple block to report the current receiver time based on the output of the tracking or telemetry blocks
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* \author Marc Majoral 2019. mmajoral(at)cttc.es
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* \author Javier Arribas 2018. jarribas(at)cttc.es
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*
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*
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* -------------------------------------------------------------------------
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*
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* Copyright (C) 2010-2018 (see AUTHORS file for a list of contributors)
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* Copyright (C) 2010-2019 (see AUTHORS file for a list of contributors)
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*
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* GNSS-SDR is a software defined Global Navigation
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* Satellite Systems receiver
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@ -54,19 +55,16 @@ gnss_sdr_fpga_sample_counter::gnss_sdr_fpga_sample_counter(
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interval_ms = _interval_ms;
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fs = _fs;
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samples_per_output = std::round(fs * static_cast<double>(interval_ms) / 1e3);
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//todo: Load here the hardware counter register with this amount of samples. It should produce an
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//interrupt every samples_per_output count.
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//The hardware timer must keep always interrupting the PS. It must not wait for the interrupt to
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//be served.
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open_device();
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sample_counter = 0ULL;
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last_sample_counter = 0ULL;
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current_T_rx_ms = 0;
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current_s = 0;
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current_m = 0;
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current_h = 0;
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current_days = 0;
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report_interval_ms = 1000; // default reporting 1 second
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report_interval_ms = 1000; // default reporting 1 second
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samples_per_report = std::round(fs * static_cast<double>(report_interval_ms) / 1e3);
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flag_enable_send_msg = false; // enable it for reporting time with asynchronous message
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flag_m = false;
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flag_h = false;
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@ -84,8 +82,6 @@ gnss_sdr_fpga_sample_counter_sptr gnss_sdr_make_fpga_sample_counter(double _fs,
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// Called by gnuradio to enable drivers, etc for i/o devices.
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bool gnss_sdr_fpga_sample_counter::start()
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{
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//todo: place here the RE-INITIALIZATION routines. This function will be called by GNURadio at every start of the flowgraph.
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// configure the number of samples per output in the FPGA and enable the interrupts
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configure_samples_per_output(samples_per_output);
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@ -93,14 +89,12 @@ bool gnss_sdr_fpga_sample_counter::start()
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return true;
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}
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// Called by GNURadio to disable drivers, etc for i/o devices.
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bool gnss_sdr_fpga_sample_counter::stop()
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{
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//todo: place here the routines to stop the associated hardware (if needed).This function will be called by GNURadio at every stop of the flowgraph.
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// return true if everything is ok.
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close_device();
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// return true if everything is ok.
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return true;
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}
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@ -110,29 +104,27 @@ int gnss_sdr_fpga_sample_counter::general_work(int noutput_items __attribute__((
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__attribute__((unused)) gr_vector_const_void_star &input_items,
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gr_vector_void_star &output_items)
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{
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//todo: Call here a function that waits for an interrupt. Do not open a thread,
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//it must be a simple call to a BLOCKING function.
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// The function will return the actual absolute sample count of the internal counter of the timmer.
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// store the sample count in class member sample_counter
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// Possible problem: what happen if the PS is overloaded and gnuradio does not call this function
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// with the sufficient rate to catch all the interrupts in the counter. To be evaluated later.
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wait_for_interrupt();
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uint32_t counter = wait_for_interrupt_and_read_counter();
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uint64_t samples_passed = 2 * static_cast<uint64_t>(samples_per_output) - static_cast<uint64_t>(counter); // ellapsed samples
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// Note: at this moment the sample counter is implemented as a sample counter that decreases to zero and then it is automatically
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// reloaded again and keeps counter. It is done in this way to minimize the logic in the FPGA and maximize the FPGA clock performance
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// (it takes less resources and latency in the FPGA to compare a number against a fixed value like zero than to compare it to a programmable
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// variable number).
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uint64_t sample_counter_tmp, sample_counter_msw_tmp;
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sample_counter_tmp = map_base[0];
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sample_counter_msw_tmp = map_base[1];
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sample_counter_msw_tmp = sample_counter_msw_tmp << 32;
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sample_counter_tmp = sample_counter_tmp + sample_counter_msw_tmp; // 2^32
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sample_counter = sample_counter_tmp;
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sample_counter = sample_counter + samples_passed; //samples_per_output;
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auto *out = reinterpret_cast<Gnss_Synchro *>(output_items[0]);
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out[0] = Gnss_Synchro();
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out[0].Flag_valid_symbol_output = false;
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out[0].Flag_valid_word = false;
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out[0].Channel_ID = -1;
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out[0].fs = fs;
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if ((current_T_rx_ms % report_interval_ms) == 0)
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if ((sample_counter - last_sample_counter) > samples_per_report)
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{
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last_sample_counter = sample_counter;
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current_s++;
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if ((current_s % 60) == 0)
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{
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@ -190,7 +182,6 @@ int gnss_sdr_fpga_sample_counter::general_work(int noutput_items __attribute__((
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}
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}
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out[0].Tracking_sample_counter = sample_counter;
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//current_T_rx_ms = (sample_counter * 1000) / samples_per_output;
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current_T_rx_ms = interval_ms * (sample_counter) / samples_per_output;
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return 1;
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}
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@ -240,7 +231,6 @@ void gnss_sdr_fpga_sample_counter::open_device()
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else
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{
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LOG(INFO) << "Acquisition test register sanity check success!";
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//std::cout << "Acquisition test register sanity check success!" << std::endl;
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}
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}
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@ -256,11 +246,11 @@ void gnss_sdr_fpga_sample_counter::close_device()
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close(fd);
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}
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uint32_t gnss_sdr_fpga_sample_counter::wait_for_interrupt_and_read_counter()
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//uint32_t gnss_sdr_fpga_sample_counter::wait_for_interrupt_and_read_counter()
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void gnss_sdr_fpga_sample_counter::wait_for_interrupt()
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{
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int32_t irq_count;
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ssize_t nb;
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int32_t counter;
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// enable interrupts
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int32_t reenable = 1;
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@ -273,11 +263,4 @@ uint32_t gnss_sdr_fpga_sample_counter::wait_for_interrupt_and_read_counter()
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std::cout << "fpga sample counter module read failed to retrieve 4 bytes!" << std::endl;
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std::cout << "fpga sample counter module interrupt number " << irq_count << std::endl;
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}
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// it is a rising edge interrupt, the interrupt does not need to be acknowledged
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//map_base[1] = 0; // writing anything to reg 1 acknowledges the interrupt
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// add number of passed samples or read the current counter value for more accuracy
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counter = samples_per_output; //map_base[0];
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return counter;
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}
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@ -50,11 +50,15 @@ private:
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void close_device(void);
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void open_device(void);
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bool start();
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bool stop();
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uint32_t wait_for_interrupt_and_read_counter(void);
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void wait_for_interrupt(void);
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uint32_t samples_per_output;
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uint32_t samples_per_report;
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double fs;
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uint64_t sample_counter;
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uint64_t last_sample_counter;
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uint32_t interval_ms;
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uint64_t current_T_rx_ms; // Receiver time in ms since the beginning of the run
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uint32_t current_s; // Receiver time in seconds, modulo 60
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@ -65,6 +69,7 @@ private:
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bool flag_days; // True if the receiver has been running for at least 1 day
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uint32_t current_days; // Receiver time in days since the beginning of the run
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int32_t report_interval_ms;
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bool flag_enable_send_msg;
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int32_t fd; // driver descriptor
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volatile uint32_t *map_base; // driver memory map
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