mirror of
https://github.com/eried/portapack-mayhem.git
synced 2024-10-01 01:26:06 -04:00
268 lines
5.7 KiB
C++
268 lines
5.7 KiB
C++
/*
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* Copyright (C) 2016 Jared Boone, ShareBrained Technology, Inc.
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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 __CAPTURE_THREAD_H__
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#define __CAPTURE_THREAD_H__
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#include "ch.h"
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#include "file.hpp"
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#include "event_m0.hpp"
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#include "portapack_shared_memory.hpp"
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#include "hackrf_gpio.hpp"
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using namespace hackrf::one;
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#include <cstring>
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class Writer {
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public:
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virtual bool write(const void* const buffer, const size_t bytes) = 0;
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virtual ~Writer() = default;
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};
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class RawFileWriter : public Writer {
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public:
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RawFileWriter(
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const std::string& filename
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) : file { filename, File::openmode::out | File::openmode::binary | File::openmode::trunc }
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{
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}
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bool write(const void* const buffer, const size_t bytes) override {
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return file.write(buffer, bytes);
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}
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private:
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File file;
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};
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class WAVFileWriter : public Writer {
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public:
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WAVFileWriter(
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const std::string& filename,
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size_t sampling_rate
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) : file { filename, File::openmode::out | File::openmode::binary | File::openmode::trunc },
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header { sampling_rate }
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{
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update_header();
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}
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~WAVFileWriter() {
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update_header();
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}
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bool write(const void* const buffer, const size_t bytes) override {
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const auto success = file.write(buffer, bytes) ;
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if( success ) {
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bytes_written += bytes;
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}
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return success;
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}
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private:
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struct fmt_pcm_t {
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constexpr fmt_pcm_t(
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const uint32_t sampling_rate
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) : nSamplesPerSec { sampling_rate },
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nAvgBytesPerSec { nSamplesPerSec * nBlockAlign }
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{
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}
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private:
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const uint8_t ckID[4] { 'f', 'm', 't', ' ' };
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const uint32_t cksize { 16 };
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const uint16_t wFormatTag { 0x0001 };
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const uint16_t nChannels { 1 };
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const uint32_t nSamplesPerSec;
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const uint32_t nAvgBytesPerSec;
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const uint16_t nBlockAlign { 2 };
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const uint16_t wBitsPerSample { 16 };
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};
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struct data_t {
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void set_size(const uint32_t value) {
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cksize = value;
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}
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private:
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const uint8_t ckID[4] { 'd', 'a', 't', 'a' };
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uint32_t cksize { 0 };
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};
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struct header_t {
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constexpr header_t(
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const uint32_t sampling_rate
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) : fmt { sampling_rate }
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{
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}
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void set_data_size(const uint32_t value) {
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data.set_size(value);
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cksize = sizeof(header_t) + value - 8;
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}
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private:
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const uint8_t riff_id[4] { 'R', 'I', 'F', 'F' };
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uint32_t cksize { 0 };
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const uint8_t wave_id[4] { 'W', 'A', 'V', 'E' };
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fmt_pcm_t fmt;
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data_t data;
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};
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File file;
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header_t header;
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uint64_t bytes_written { 0 };
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void update_header() {
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header.set_data_size(bytes_written);
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const auto old_position = file.seek(0);
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file.write(&header, sizeof(header));
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file.seek(old_position);
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}
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};
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class StreamOutput {
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public:
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StreamOutput(
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CaptureConfig* const config
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) : config { config }
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{
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shared_memory.baseband_queue.push_and_wait(
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CaptureConfigMessage { config }
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);
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fifo = config->fifo;
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}
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~StreamOutput() {
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fifo = nullptr;
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shared_memory.baseband_queue.push_and_wait(
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CaptureConfigMessage { nullptr }
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);
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}
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size_t available() {
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return fifo->len();
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}
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size_t read(void* const data, const size_t length) {
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return fifo->out(reinterpret_cast<uint8_t*>(data), length);
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}
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static FIFO<uint8_t>* fifo;
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private:
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CaptureConfig* const config;
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};
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class CaptureThread {
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public:
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CaptureThread(
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std::unique_ptr<Writer> writer,
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size_t write_size_log2,
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size_t buffer_count_log2
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) : config { write_size_log2, buffer_count_log2 },
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writer { std::move(writer) }
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{
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// Need significant stack for FATFS
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thread = chThdCreateFromHeap(NULL, 1024, NORMALPRIO + 10, CaptureThread::static_fn, this);
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}
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~CaptureThread() {
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if( thread ) {
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chThdTerminate(thread);
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chEvtSignal(thread, EVT_MASK_CAPTURE_THREAD);
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const auto success = chThdWait(thread);
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thread = nullptr;
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if( !success ) {
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led_tx.on();
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}
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}
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}
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const CaptureConfig& state() const {
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return config;
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}
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static void check_fifo_isr() {
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// TODO: Prevent over-signalling by transmitting a set of
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// flags from the baseband core.
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const auto fifo = StreamOutput::fifo;
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if( fifo ) {
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chEvtSignalI(thread, EVT_MASK_CAPTURE_THREAD);
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}
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}
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private:
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CaptureConfig config;
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std::unique_ptr<Writer> writer;
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static Thread* thread;
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static msg_t static_fn(void* arg) {
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auto obj = static_cast<CaptureThread*>(arg);
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return obj->run();
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}
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msg_t run() {
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const size_t write_size = 1U << config.write_size_log2;
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const auto write_buffer = std::make_unique<uint8_t[]>(write_size);
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if( !write_buffer ) {
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return false;
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}
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StreamOutput stream { &config };
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while( !chThdShouldTerminate() ) {
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if( stream.available() >= write_size ) {
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if( !transfer(stream, write_buffer.get(), write_size) ) {
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return false;
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}
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} else {
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chEvtWaitAny(EVT_MASK_CAPTURE_THREAD);
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}
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}
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return true;
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}
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bool transfer(StreamOutput& stream, uint8_t* const write_buffer, const size_t write_size) {
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bool success = false;
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led_usb.on();
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const auto bytes_to_write = stream.read(write_buffer, write_size);
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if( bytes_to_write == write_size ) {
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if( writer->write(write_buffer, write_size) ) {
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success = true;
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}
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}
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led_usb.off();
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return success;
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}
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};
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#endif/*__CAPTURE_THREAD_H__*/
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