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https://github.com/portapack-mayhem/mayhem-firmware.git
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39424632bb
* Initial commit and pr for HackRF Pro (praline) arch-port to mayhem-firmware. Please see https://github.com/portapack-mayhem/mayhem-firmware/issues/2957. Added flash specifics for -DBOARD=PRALINE. This firmware only builds with toolchain v9.2.1 if hackrf codebase has -B arm in firmware/hackrf_usb/CMakeLists.txt. * Updated CMakeLists.txt per coordination with @HtoToo. For -DBOARD=PRALINE FLASH_MB_SIZE and FLASH_MB_LIMIT_SIZE are now 4. Removed praline specific variable for FLASH limits. * Updated chibios-portapack's board.cpp to support initialization of the HachRF-Pro (praline) FPGA. Added append_fpga_bitstream.py tool to ensure that praline_fgpa.bin bitstream can be appended to -DBOARD=PRALINE produced firmware. In order to ensure successful execution of append_fpga_bitstream.py to append the fpga bitstream we should expect that the bistsream will be located at 0x180000 in flash. This requires that FLASH_MB_LIMIT_SIZE must be 1.5, and FLASH_BYTES_LIMIT_SIZE must be 1535 * 1024. If we want to allow more or less space for the base firmware image sans the fpga bitstream the location of the bistream must be moved to a location other than 0x180000. * Updated location of praline_fpga.bin bitstream to 0x380000 to allow more room for firmware. Firmware now has 3.5MB, or 2MB more available than before as coordinated with @HTotoo. * Expanded #ifndef PRALINE to include og and r9 gpio and pin setup as coordinated with @HTotoo. * Added note for PRALINE FLASH_MB_LIMIT_SIZE and FLASH_BYTES_LIMIT_SIZE to explain why we are using the 3.5 and 3584 values respectively as coordinated with @HTotoo. * Next round of modifications derived heavily, if not entirely from work done by @banandana at https://github.com/Banandana/mayhem-firmware. This commit should power on the HackRF Pro (praline) display, power on the fpga, and enable gpio, and provide debug utilties. There is still a lot of work to be done to fully enable the new praline board with this build and firmware architectural porting effort. However, hackrf-one boards do not seem to be adversely impacted by the #ifdef PRALINE statements, and CMakeLists updates, as far as I have been able to test. * Ran format-code.sh. Updates for this commit are only due to formatting. Tested builds and they seem to work as exptected. * Addressed fixes in firmware/application and firmware/baseband. Stream now flows to capture and looking glass. Issues were related to thread management. Issues were originally addressed by @banandana. * Ran format-code.sh to allow for consistency with autoamted clang checks. * Update hackrf ref repo to mayhem-portapack-hackrf next from https://github.com/portapack-mayhem/hackrf * Addressed format edits necessary to pass clang-format check. * Starting addressing Si5351 Clocks for radio sampling. These updates correctly set the Si5351 clock at start up. There appears to be an issue during runtime when testing with RX Test Init, Capture and Looking glass. * Updated clock_manager.cpp to restore correct function introduced by @banandana when testing with Rx Test Init. * Switched to using decimation for setting the sample rate without changing the Si5351 clock. This assumes that for the praline board Si5351 CLK0 runs at fixed 8 MHz (constant) and the FPGA decimates to get the desired sample rate. For example, for a 1 MHz sample rate -> Si5351 outputs 8 MHz, FPGA decimates by 8. There is still more work needed here, and potential verification that this is the correct way to operate with this new archteitecture. * After deliberating on hackrf_usb hackrf_core.c and radio.c, and reviewing firmware/application/hw/si5351.cpp the original approach of using the aproach detailed in hackrf_core.c sample_rate_frac_set() lines 580-582, via the implementation in firmware/application/hw/si5351.cpp seems like the best place to continue testing efforts. * Tested at ~2.4GHz (2.3 - 2.5) with lookgin glass and was able to receive signals. Added a Signal Path debug app to test gains, and readio mode (receive/transmit). * Added two debug apps for the RFFC507x. Status View and Tuning View. This helped debug some of the potential issues with tuning. * update submodule * format code * Small touch up merging latest next and ensuring build for HackRF One. * Reverted edits to re: firmware/baseband/sd_over_usb/scsi.c and firmware/application/portapack.cpp. Source now builds, had to pull latest hackrf submodule. * Skipped detect hardware for praline board to avoid backscreen in HackRF Pro praline board. --------- Co-authored-by: gullradriel <gullradriel@users.noreply.github.com>
119 lines
3.7 KiB
C++
119 lines
3.7 KiB
C++
/*
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* Copyright (C) 2014 Jared Boone, ShareBrained Technology, Inc.
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* Copyright (C) 2016 Furrtek
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*
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* This file is part of PortaPack.
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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; either version 2, or (at your option)
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* 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 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; see the file COPYING. If not, write to
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* the Free Software Foundation, Inc., 51 Franklin Street,
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* Boston, MA 02110-1301, USA.
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*/
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#ifndef __PROC_NFM_AUDIO_H__
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#define __PROC_NFM_AUDIO_H__
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#include "baseband_processor.hpp"
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#include "baseband_thread.hpp"
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#include "rssi_thread.hpp"
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#include "dsp_decimate.hpp"
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#include "dsp_demodulate.hpp"
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#include "dsp_iir.hpp"
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#include "audio_output.hpp"
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#include "spectrum_collector.hpp"
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#include <cstdint>
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#define Z_MIN_FILTER_COUNT 224
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#define Z_MIN_ZERO_CROSSINGS 20
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class NarrowbandFMAudio : public BasebandProcessor {
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public:
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#ifdef PRALINE
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NarrowbandFMAudio(); // Phase 2: Explicit constructor for manual thread start
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#endif
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void execute(const buffer_c8_t& buffer) override;
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void on_message(const Message* const message) override;
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private:
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static constexpr size_t baseband_fs = 3072000;
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std::array<complex16_t, 512> dst{};
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const buffer_c16_t dst_buffer{
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dst.data(),
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dst.size()};
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const buffer_s16_t work_audio_buffer{
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(int16_t*)dst.data(),
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sizeof(dst) / sizeof(int16_t)};
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std::array<int16_t, 16> audio{};
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const buffer_s16_t audio_buffer{
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(int16_t*)audio.data(),
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sizeof(audio) / sizeof(int16_t)};
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std::array<int16_t, 16> tone{};
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const buffer_s16_t tone_buffer{
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(int16_t*)tone.data(),
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sizeof(tone) / sizeof(int16_t)};
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dsp::decimate::FIRC8xR16x24FS4Decim8 decim_0{};
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dsp::decimate::FIRC16xR16x32Decim8 decim_1{};
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dsp::decimate::FIRAndDecimateComplex channel_filter{};
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int32_t channel_filter_low_f = 0;
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int32_t channel_filter_high_f = 0;
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int32_t channel_filter_transition = 0;
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// For CTCSS decoding
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dsp::decimate::FIR64AndDecimateBy2Real ctcss_filter{};
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IIRBiquadFilter hpf{};
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dsp::demodulate::FM demod{};
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AudioOutput audio_output{};
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SpectrumCollector channel_spectrum{};
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uint32_t tone_phase{0};
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uint32_t tone_delta{0};
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bool pitch_rssi_enabled{false};
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float cur_sample{}, prev_sample{};
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uint32_t z_acc{0}, z_timer{0}, z_count{0}, z_filter_count{0};
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bool ctcss_detect_enabled{true};
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static constexpr float k = 32768.0f;
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static constexpr float ki = 1.0f / k;
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bool configured{false};
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// RequestSignalMessage sig_message { RequestSignalMessage::Signal::Squelched };
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CodedSquelchMessage ctcss_message{0};
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/* NB: Threads should be the last members in the class definition. */
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#ifdef PRALINE
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BasebandThread baseband_thread{baseband_fs, this, baseband::Direction::Receive,
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/*auto_start*/ false}; // Phase 2: Manual start
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RSSIThread rssi_thread{/*auto_start*/ false}; // Phase 2: Manual start
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#else
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BasebandThread baseband_thread{baseband_fs, this, baseband::Direction::Receive};
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RSSIThread rssi_thread{};
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#endif
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void pitch_rssi_config(const PitchRSSIConfigureMessage& message);
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void configure(const NBFMConfigureMessage& message);
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void capture_config(const CaptureConfigMessage& message);
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};
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#endif /*__PROC_NFM_AUDIO_H__*/
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