satdump/src-core/modules/module_bpsk_demod.cpp
2021-03-01 00:24:22 +01:00

366 lines
No EOL
12 KiB
C++

#include "module_bpsk_demod.h"
#include <dsp/fir_gen.h>
#include "logger.h"
#include "imgui/imgui.h"
// Return filesize
size_t getFilesize(std::string filepath);
BPSKDemodModule::BPSKDemodModule(std::string input_file, std::string output_file_hint, std::map<std::string, std::string> parameters) : ProcessingModule(input_file, output_file_hint, parameters),
d_agc_rate(std::stof(parameters["agc_rate"])),
d_samplerate(std::stoi(parameters["samplerate"])),
d_symbolrate(std::stoi(parameters["symbolrate"])),
d_rrc_alpha(std::stof(parameters["rrc_alpha"])),
d_rrc_taps(std::stoi(parameters["rrc_taps"])),
d_loop_bw(std::stof(parameters["costas_bw"])),
d_buffer_size(std::stoi(parameters["buffer_size"])),
d_dc_block(parameters.count("dc_block") > 0 ? std::stoi(parameters["dc_block"]) : 0)
{
if (parameters["baseband_format"] == "i16")
{
i16 = true;
}
else if (parameters["baseband_format"] == "i8")
{
i8 = true;
}
else if (parameters["baseband_format"] == "f32")
{
f32 = true;
}
else if (parameters["baseband_format"] == "w8")
{
w8 = true;
}
// Init DSP blocks
agc = std::make_shared<libdsp::AgcCC>(d_agc_rate, 1.0f, 1.0f, 65536);
rrc = std::make_shared<libdsp::FIRFilterCCF>(1, libdsp::firgen::root_raised_cosine(1, d_samplerate, d_symbolrate, d_rrc_alpha, d_rrc_taps));
pll = std::make_shared<libdsp::CostasLoop>(d_loop_bw, 2);
rec = std::make_shared<libdsp::ClockRecoveryMMCC>((float)d_samplerate / (float)d_symbolrate, pow(8.7e-3, 2) / 4.0, 0.5f, 8.7e-3, 0.005f);
// Buffers
sym_buffer = new int8_t[d_buffer_size * 2];
buffer_i16 = new int16_t[d_buffer_size * 2];
buffer_i8 = new int8_t[d_buffer_size * 2];
buffer_u8 = new uint8_t[d_buffer_size * 2];
}
std::vector<ModuleDataType> BPSKDemodModule::getInputTypes()
{
return {DATA_FILE, DATA_STREAM};
}
std::vector<ModuleDataType> BPSKDemodModule::getOutputTypes()
{
return {DATA_FILE};
}
BPSKDemodModule::~BPSKDemodModule()
{
delete[] sym_buffer;
delete[] buffer_i16;
delete[] buffer_i8;
delete[] buffer_u8;
//delete[] in_pipe;
//delete[] rrc_pipe;
//delete[] agc_pipe;
//delete[] pll_pipe;
//delete[] rec_pipe;
}
void BPSKDemodModule::process()
{
if (input_data_type == DATA_FILE)
filesize = getFilesize(d_input_file);
else
filesize = 0;
if (input_data_type == DATA_FILE)
data_in = std::ifstream(d_input_file, std::ios::binary);
data_out = std::ofstream(d_output_file_hint + ".soft", std::ios::binary);
d_output_files.push_back(d_output_file_hint + ".soft");
logger->info("Using input baseband " + d_input_file);
logger->info("Demodulating to " + d_output_file_hint + ".soft");
logger->info("Buffer size : " + std::to_string(d_buffer_size));
time_t lastTime = 0;
agcRun = rrcRun = pllRun = recRun = true;
fileThread = std::thread(&BPSKDemodModule::fileThreadFunction, this);
agcThread = std::thread(&BPSKDemodModule::agcThreadFunction, this);
rrcThread = std::thread(&BPSKDemodModule::rrcThreadFunction, this);
pllThread = std::thread(&BPSKDemodModule::pllThreadFunction, this);
recThread = std::thread(&BPSKDemodModule::clockrecoveryThreadFunction, this);
int dat_size = 0;
while (input_data_type == DATA_STREAM ? input_active.load() : !data_in.eof())
{
dat_size = rec_pipe.read(); //->read(rec_buffer2, d_buffer_size);
if (dat_size <= 0)
continue;
for (int i = 0; i < dat_size; i++)
{
sym_buffer[i] = clamp(rec_pipe.readBuf[i].real() * 50);
}
rec_pipe.flush();
data_out.write((char *)sym_buffer, dat_size);
if (time(NULL) % 10 == 0 && lastTime != time(NULL))
{
lastTime = time(NULL);
logger->info("Progress " + std::to_string(round(((float)progress / (float)filesize) * 1000.0f) / 10.0f) + "%");
}
}
logger->info("Demodulation finished");
if (fileThread.joinable())
fileThread.join();
logger->debug("FILE OK");
}
#include <dsp/dc_blocker.h>
void BPSKDemodModule::fileThreadFunction()
{
libdsp::DCBlocker dcB(320, true);
int gotten;
while (input_data_type == DATA_STREAM ? input_active.load() : !data_in.eof())
{
// Get baseband, possibly convert to F32
if (f32)
{
if (input_data_type == DATA_FILE)
data_in.read((char *)in_pipe.writeBuf, d_buffer_size * sizeof(std::complex<float>));
else
gotten = input_fifo->pop((uint8_t *)in_pipe.writeBuf, d_buffer_size, sizeof(std::complex<float>));
}
else if (i16)
{
if (input_data_type == DATA_FILE)
data_in.read((char *)buffer_i16, d_buffer_size * sizeof(int16_t) * 2);
else
gotten = input_fifo->pop((uint8_t *)buffer_i16, d_buffer_size, sizeof(int16_t) * 2);
for (int i = 0; i < d_buffer_size; i++)
{
using namespace std::complex_literals;
in_pipe.writeBuf[i] = (float)buffer_i16[i * 2] + (float)buffer_i16[i * 2 + 1] * 1if;
}
}
else if (i8)
{
if (input_data_type == DATA_FILE)
data_in.read((char *)buffer_i8, d_buffer_size * sizeof(int8_t) * 2);
else
gotten = input_fifo->pop((uint8_t *)buffer_i8, d_buffer_size, sizeof(int8_t) * 2);
for (int i = 0; i < d_buffer_size; i++)
{
using namespace std::complex_literals;
in_pipe.writeBuf[i] = (float)buffer_i8[i * 2] + (float)buffer_i8[i * 2 + 1] * 1if;
}
}
else if (w8)
{
if (input_data_type == DATA_FILE)
data_in.read((char *)buffer_u8, d_buffer_size * sizeof(uint8_t) * 2);
else
gotten = input_fifo->pop((uint8_t *)buffer_i8, d_buffer_size, sizeof(uint8_t) * 2);
for (int i = 0; i < d_buffer_size; i++)
{
float imag = (buffer_u8[i * 2] - 127) * 0.004f;
float real = (buffer_u8[i * 2 + 1] - 127) * 0.004f;
using namespace std::complex_literals;
in_pipe.writeBuf[i] = real + imag * 1if;
}
}
if (input_data_type == DATA_FILE)
progress = data_in.tellg();
else
progress = 0;
if (d_dc_block)
dcB.work(in_pipe.writeBuf, input_data_type == DATA_FILE ? d_buffer_size : gotten, in_pipe.writeBuf);
in_pipe.swap(d_buffer_size); //->write(in_buffer, input_data_type == DATA_FILE ? d_buffer_size : gotten);
}
if (input_data_type == DATA_FILE)
data_in.close();
// Exit all threads... Without causing a race condition!
agcRun = rrcRun = pllRun = recRun = false;
in_pipe.stopWriter();
in_pipe.stopReader();
agc_pipe.stopWriter();
if (agcThread.joinable())
agcThread.join();
logger->debug("AGC OK");
agc_pipe.stopReader();
rrc_pipe.stopWriter();
if (rrcThread.joinable())
rrcThread.join();
logger->debug("RRC OK");
rrc_pipe.stopReader();
pll_pipe.stopWriter();
if (pllThread.joinable())
pllThread.join();
logger->debug("PLL OK");
pll_pipe.stopReader();
rec_pipe.stopWriter();
if (recThread.joinable())
recThread.join();
logger->debug("REC OK");
data_out.close();
rec_pipe.stopReader();
}
void BPSKDemodModule::agcThreadFunction()
{
int gotten;
while (agcRun)
{
gotten = in_pipe.read(); //->read(in_buffer2, d_buffer_size);
if (gotten <= 0)
continue;
/// AGC
agc->work(in_pipe.readBuf, gotten, agc_pipe.writeBuf);
in_pipe.flush();
agc_pipe.swap(gotten); //->write(agc_buffer, gotten);
}
}
void BPSKDemodModule::rrcThreadFunction()
{
int gotten;
while (rrcRun)
{
gotten = agc_pipe.read(); //->read(agc_buffer2, d_buffer_size);
if (gotten <= 0)
continue;
// Root-raised-cosine filtering
int out = rrc->work(agc_pipe.readBuf, gotten, rrc_pipe.writeBuf);
agc_pipe.flush();
rrc_pipe.swap(out); //->write(rrc_buffer, out);
}
}
void BPSKDemodModule::pllThreadFunction()
{
int gotten;
while (pllRun)
{
gotten = rrc_pipe.read(); //->read(rrc_buffer2, d_buffer_size);
if (gotten <= 0)
continue;
// Costas loop, frequency offset recovery
pll->work(rrc_pipe.readBuf, gotten, pll_pipe.writeBuf);
rrc_pipe.flush();
pll_pipe.swap(gotten); //->write(pll_buffer, gotten);
}
}
void BPSKDemodModule::clockrecoveryThreadFunction()
{
int gotten;
while (recRun)
{
gotten = pll_pipe.read(); //->read(pll_buffer2, d_buffer_size);
if (gotten <= 0)
continue;
int recovered_size = 0;
try
{
// Clock recovery
recovered_size = rec->work(pll_pipe.readBuf, gotten, rec_pipe.writeBuf);
}
catch (std::runtime_error &e)
{
logger->error(e.what());
}
pll_pipe.flush();
rec_pipe.swap(recovered_size); //->write(rec_buffer, recovered_size);
}
}
void BPSKDemodModule::drawUI()
{
ImGui::Begin("BPSK Demodulator", NULL, NOWINDOW_FLAGS);
// Constellation
{
ImDrawList *draw_list = ImGui::GetWindowDrawList();
draw_list->AddRectFilled(ImGui::GetCursorScreenPos(),
ImVec2(ImGui::GetCursorScreenPos().x + 200, ImGui::GetCursorScreenPos().y + 200),
ImColor::HSV(0, 0, 0));
for (int i = 0; i < 2048; i++)
{
draw_list->AddCircleFilled(ImVec2(ImGui::GetCursorScreenPos().x + (int)(100 + rec_pipe.readBuf[i].real() * 50) % 200,
ImGui::GetCursorScreenPos().y + (int)(100 + rec_pipe.readBuf[i].imag() * 50) % 200),
2,
ImColor::HSV(113.0 / 360.0, 1, 1, 1.0));
}
ImGui::Dummy(ImVec2(200 + 3, 200 + 3));
}
ImGui::ProgressBar((float)progress / (float)filesize, ImVec2(ImGui::GetWindowWidth() - 10, 20));
ImGui::End();
}
std::string BPSKDemodModule::getID()
{
return "bpsk_demod";
}
std::vector<std::string> BPSKDemodModule::getParameters()
{
return {"samplerate", "symbolrate", "agc_rate", "rrc_alpha", "rrc_taps", "costas_bw", "iq_invert", "buffer_size", "dc_block", "baseband_format"};
}
std::shared_ptr<ProcessingModule> BPSKDemodModule::getInstance(std::string input_file, std::string output_file_hint, std::map<std::string, std::string> parameters)
{
return std::make_shared<BPSKDemodModule>(input_file, output_file_hint, parameters);
}