Files
GnuRadio/gr-jay/lib/squelch_impl.cc
T
jens 2d656e14fc - cleaned up from debug output
- fixed peak change mechanism

git-svn-id: http://moon:8086/svn/software/trunk/projects/GnuRadio@506 b431acfa-c32f-4a4a-93f1-934dc6c82436
2019-05-29 14:12:42 +00:00

139 lines
3.3 KiB
C++

/* -*- c++ -*- */
/*
* Copyright 2019 Jay Arrowfield.
*
* This is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation; either version 3, or (at your option)
* any later version.
*
* This software is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this software; see the file COPYING. If not, write to
* the Free Software Foundation, Inc., 51 Franklin Street,
* Boston, MA 02110-1301, USA.
*/
#ifdef HAVE_CONFIG_H
#include "config.h"
#endif
#include <gnuradio/io_signature.h>
#include <regex>
#include "squelch_impl.h"
namespace gr {
namespace jay {
squelch::sptr
squelch::make()
{
return gnuradio::get_initial_sptr
(new squelch_impl());
}
/*
* The private constructor
*/
squelch_impl::squelch_impl()
: gr::sync_block("squelch",
gr::io_signature::make(1, 1, sizeof(float)),
gr::io_signature::make(1, 1, sizeof(float)))
, m_gain_target(1.0f)
, m_gain(0.0f)
{
m_msg_port_in = pmt::mp("control");
message_port_register_in(m_msg_port_in);
set_msg_handler(m_msg_port_in, boost::bind(&squelch_impl::on_message, this, _1));
}
/*
* Our virtual destructor.
*/
squelch_impl::~squelch_impl()
{
}
void squelch_impl::print_pair(pmt::pmt_t pair)
{
pmt::pmt_t key = pmt::car(pair);
pmt::pmt_t val = pmt::cdr(pair);
if (pmt::is_integer(val))
{
fprintf(stderr, "[%s=%d]", pmt::symbol_to_string(key).c_str(), (int)pmt::to_long(val));
}
else if (pmt::is_real(val))
{
fprintf(stderr, "[%s=%f]", pmt::symbol_to_string(key).c_str(), pmt::to_float(val));
}
else if (pmt::is_bool(val))
{
fprintf(stderr, "[%s=%d]", pmt::symbol_to_string(key).c_str(), pmt::to_bool(val));
}
fprintf(stderr, "\n");
}
void squelch_impl::check_pair(pmt::pmt_t pair)
{
pmt::pmt_t key = pmt::car(pair);
pmt::pmt_t val = pmt::cdr(pair);
// Check pair for data
if (pmt::symbol_to_string(key) == std::string("gain"))
{
float gain_dB = pmt::to_float(val) - 50.f;
m_gain_target = std::pow(10.f, gain_dB/10);
}
}
void squelch_impl::on_message(pmt::pmt_t msg)
{
if (pmt::is_dict(msg))
{
pmt::pmt_t items = pmt::dict_items(msg);
try
{
size_t len_items = pmt::length(items);
for (int i=0; i < len_items; i++)
{
pmt::pmt_t pair = pmt::nth(i, items);
check_pair(pair);
}
}
catch (const std::exception& e)
{
check_pair(msg);
}
}
}
int
squelch_impl::work(int noutput_items,
gr_vector_const_void_star &input_items,
gr_vector_void_star &output_items)
{
const float *in = (const float *) input_items[0];
float *out = (float *) output_items[0];
m_gain = 0.99f*m_gain + 0.01f*m_gain_target;
// Do <+signal processing+>
for (int i=0; i < noutput_items; i++)
{
*(out++) = *(in++) * m_gain;
}
// Tell runtime system how many output items we produced.
return noutput_items;
}
} /* namespace jay */
} /* namespace gr */