satdump/src-core/common/dsp/file_source.cpp
2021-10-22 15:26:17 +02:00

143 lines
No EOL
4.8 KiB
C++

#include "file_source.h"
#include <volk/volk.h>
namespace dsp
{
FileSourceBlock::FileSourceBlock(std::string file, BasebandType type, int buffer_size, bool iq_swap) : Block(nullptr),
d_type(type),
d_buffer_size(buffer_size),
d_iq_swap(iq_swap)
{
d_filesize = getFilesize(file);
d_progress = 0;
d_eof = false;
d_input_file = std::ifstream(file, std::ios::binary);
buffer_i16 = new int16_t[d_buffer_size * 100];
buffer_i8 = new int8_t[d_buffer_size * 100];
buffer_u8 = new uint8_t[d_buffer_size * 100];
#ifdef ENABLE_DECOMPRESSION
compressedBuffer = new uint8_t[d_buffer_size * 8];
#endif
d_got_input = false;
}
FileSourceBlock::~FileSourceBlock()
{
delete[] buffer_i16;
delete[] buffer_i8;
delete[] buffer_u8;
d_input_file.close();
}
void FileSourceBlock::work()
{
if (!d_input_file.eof())
{
int output_size = d_buffer_size;
// Get baseband, possibly convert to F32
switch (d_type)
{
case COMPLEX_FLOAT_32:
d_input_file.read((char *)output_stream->writeBuf, d_buffer_size * sizeof(complex_t));
break;
case INTEGER_16:
d_input_file.read((char *)buffer_i16, d_buffer_size * sizeof(int16_t) * 2);
volk_16i_s32f_convert_32f_u((float *)output_stream->writeBuf, (const int16_t *)buffer_i16, 1.0f / 0.00004f, d_buffer_size * 2);
break;
case INTEGER_8:
#ifdef ENABLE_DECOMPRESSION
{
while ((int)decompressionVector.size() < d_buffer_size * 2 && !d_input_file.eof())
{
d_input_file.read((char *)compressedBuffer, d_buffer_size * 8);
int decn = decompressor.work(compressedBuffer, d_buffer_size * 8, (uint8_t *)buffer_i8);
decompressionVector.insert(decompressionVector.end(), buffer_i8, &buffer_i8[decn]);
}
int contains = (decompressionVector.size() - (decompressionVector.size() % 2));
int to_use = contains > d_buffer_size ? d_buffer_size * 2 : contains;
volk_8i_s32f_convert_32f_u((float *)output_stream->writeBuf, (const int8_t *)decompressionVector.data(), 1.0f / 0.004f, to_use);
decompressionVector.erase(decompressionVector.begin(), decompressionVector.begin() + to_use);
output_size = to_use / 2;
}
#else
d_input_file.read((char *)buffer_i8, d_buffer_size * sizeof(int8_t) * 2);
volk_8i_s32f_convert_32f_u((float *)output_stream->writeBuf, (const int8_t *)buffer_i8, 1.0f / 0.004f, d_buffer_size * 2);
#endif
break;
case WAV_8:
d_input_file.read((char *)buffer_u8, 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;
output_stream->writeBuf[i] = complex_t(real, imag);
}
break;
default:
break;
}
if (d_iq_swap)
{
for (int i = 0; i < output_size; i++)
{
output_stream->writeBuf[i] = complex_t(output_stream->writeBuf[i].imag, output_stream->writeBuf[i].real);
}
}
output_stream->swap(output_size);
d_progress = d_input_file.tellg();
}
else
{
d_eof = true;
}
}
uint64_t FileSourceBlock::getFilesize(std::string filepath)
{
std::ifstream file(filepath, std::ios::binary | std::ios::ate);
std::uint64_t fileSize = file.tellg();
file.close();
return fileSize;
}
uint64_t FileSourceBlock::getFilesize()
{
return d_filesize;
}
uint64_t FileSourceBlock::getPosition()
{
return d_progress;
}
bool FileSourceBlock::eof()
{
return d_eof;
}
BasebandType BasebandTypeFromString(std::string type)
{
if (type == "i16")
return INTEGER_16;
else if (type == "i8")
return INTEGER_8;
else if (type == "f32")
return COMPLEX_FLOAT_32;
else if (type == "w8")
return WAV_8;
else
return COMPLEX_FLOAT_32;
}
}