Files
cpp/radio/interpolation/PolyPhase.hpp
T
jens 0305350789 - refactored
git-svn-id: http://moon:8086/svn/software/trunk/libsrc/cpp@1029 b431acfa-c32f-4a4a-93f1-934dc6c82436
2022-06-17 12:46:44 +00:00

110 lines
2.2 KiB
C++

#ifndef _INTERPOLATION_POLYPHASE_HPP_
#define _INTERPOLATION_POLYPHASE_HPP_
#pragma once
#include <cpp/radio/Vector.hpp>
#include <cpp/radio/FirComplex.hpp>
#include <cpp/radio/processor/src/Block.hpp>
#include <cpp/radio/interpolation/TimingGenerator.hpp>
#include <fir/fir2.h>
#include <memory.h>
#include <string.h>
namespace Radio
{
namespace Interpolation
{
// --------------------------------------------------------------
// Complex FIR-based discrete step polyphase interpolation filter
// --------------------------------------------------------------
class PolyPhase : public Processor::Block
{
public:
PolyPhase(TimingGenerator &timingGenerator)
: Processor::Block(1, 1)
, m_timingGenerator(timingGenerator)
{
}
~PolyPhase()
{
}
void init(RealScalar fa, RealScalar tsym, RealScalar alpha, uint32_t N, uint32_t M)
{
uint32_t i, j;
fir_float_t *pCoeff;
RealScalar k;
m_fir.setNumTaps(N);
m_M = M;
m_N = N;
m_coeff.resize(N, M);
pCoeff = (fir_float_t*)malloc((N+1)*M*sizeof(fir_float_t));
memset(pCoeff, 0, (N+1)*M*sizeof(fir_float_t));
k = CalcFirSRRC(pCoeff, M*fa, tsym, alpha, N*M);
m_coeff.resize(N, M);
for(i=0; i < M; i++)
{
for(j=0; j < N; j++)
{
m_coeff(j,i) = M*pCoeff[M*j+M/2+i];
}
}
free(pCoeff);
}
void process()
{
// Get buffers
auto buf_in = dynamic_cast<Processor::Buffer<ComplexScalar>*>(buffer_in());
auto buf_out = dynamic_cast<Processor::Buffer<ComplexScalar>*>(buffer_out());
// Process input
while(buf_out->free())
{
size_t adv = m_timingGenerator.getAdv();
radio_float_t mu = m_timingGenerator.getMu();
if (buf_in->len() < adv)
{
break;
}
if (adv != 0)
{
m_fir.feed(*buf_in, adv);
}
// Polyphase filtering
uint32_t index = (uint32_t)dmod(dmax(0, mu*m_M), (RealScalar)m_M);
ComplexScalar yout = m_fir.processReal(column(m_coeff, index));
buf_out->write(&yout, 1);
// Process timing generator
m_timingGenerator.process(yout);
}
}
private:
TimingGenerator &m_timingGenerator;
FirComplex m_fir;
uint32_t m_M;
uint32_t m_N;
uint32_t m_r;
uint32_t m_w;
RMat m_coeff;
};
} // Radio::Interpolation
} // ::Radio
#endif // _INTERPOLATION_POLYPHASE_HPP_