Files
GnuRadio/gr-jay/python/peak_manager.py
T
2019-05-29 13:23:48 +00:00

152 lines
4.6 KiB
Python

#!/usr/bin/env python
# -*- coding: utf-8 -*-
#
# 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.
#
import numpy
import pmt
from gnuradio import gr
class peak_manager(gr.basic_block):
"""
docstring for block peak_manager
"""
def __init__(self, numPeaksMax):
gr.basic_block.__init__(self,
name="peak_manager",
in_sig=None,
out_sig=None)
self.numPeaksMax = numPeaksMax
self.peak_dict = {}
self.ports_avail = []
self.ports_used = []
print ("numPeaksMax : ", numPeaksMax)
# Register in / out message ports
self.message_port_register_in(pmt.intern("control"))
if self.numPeaksMax < 2:
out_port_name = "status"
self.ports_avail.append(out_port_name)
self.message_port_register_out(pmt.intern(out_port_name))
else:
for n in range(0, self.numPeaksMax):
out_port_name = "status" + str(n)
self.ports_avail.append(out_port_name)
self.message_port_register_out(pmt.intern(out_port_name))
# Register in message handler
self.set_msg_handler(pmt.intern("control"), self.msg_handler)
def peak_add(self, key, peak):
if len(self.ports_avail) > 0:
port_name = self.ports_avail.pop()
peak['port_name'] = port_name
self.peak_dict[key] = peak
return peak
return None
def peak_del(self, key):
if key in self.peak_dict:
port_name = self.peak_dict[key]['port_name']
self.ports_avail.append(port_name)
self.peak_dict.pop(key, None)
return True
return False
def peak_get(self, key):
result = None
if key in self.peak_dict:
result = self.peak_dict[key]
return result
def msg_handler(self, msg):
if pmt.is_dict(msg):
items = pmt.dict_items(msg)
peakMsg = {}
for n in range(0, pmt.length(items)):
pair = pmt.nth(n, items)
key = pmt.car(pair)
val = pmt.cdr(pair)
key_str = pmt.symbol_to_string(key)
if pmt.is_integer(val):
value = pmt.to_long(val)
peakMsg[key_str] = value
elif pmt.is_real(val):
value = pmt.to_float(val)
peakMsg[key_str] = value
elif pmt.is_bool(val):
value = pmt.to_bool(val)
peakMsg[key_str] = value
id = peakMsg['id']
freq_MHz = peakMsg['freq_Hz']*1e-6
peak_key = 'peak' + str(id)
peakEntry = self.peak_get(peak_key)
if peakMsg['state'] == 1:
if peakEntry is not None:
portname = peakEntry['port_name']
print("Update " + peak_key + "(" + portname + ")")
msg_dict = pmt.make_dict()
msg_dict = pmt.dict_add(msg_dict, pmt.intern("freq"), pmt.from_double(peakMsg['freq_Hz']))
msg_dict = pmt.dict_add(msg_dict, pmt.intern("gain"), pmt.from_double(-peakMsg['height']))
self.message_port_pub(pmt.intern(portname), msg_dict)
else:
print ("New peak #{} at {:0.2f} MHz".format(id, freq_MHz))
peakEntry = self.peak_add(peak_key, peakMsg)
if peakEntry is not None:
portname = peakEntry['port_name']
print("Added " + peak_key + "(" + portname + ")")
msg_dict = pmt.make_dict()
msg_dict = pmt.dict_add(msg_dict, pmt.intern("freq"), pmt.from_double(peakMsg['freq_Hz']))
msg_dict = pmt.dict_add(msg_dict, pmt.intern("gain"), pmt.from_double(-peakMsg['height']))
self.message_port_pub(pmt.intern(portname), msg_dict)
else:
if peakEntry is not None:
print ("Lost peak #{} at {:0.2f} MHz".format(id, freq_MHz))
portname = peakEntry['port_name']
pair = pmt.cons(pmt.intern("gain"), pmt.from_float(-120.0))
self.message_port_pub(pmt.intern(portname), pair)
if self.peak_del(peak_key):
print("Deleted " + peak_key + "(" + portname + ")")
else:
print(pmt.symbol_to_string(msg))
def forecast(self, noutput_items, ninput_items_required):
#setup size of input_items[i] for work call
for i in range(len(ninput_items_required)):
ninput_items_required[i] = noutput_items
def general_work(self, input_items, output_items):
output_items[0][:] = input_items[0]
consume(0, len(input_items[0]))
#self.consume_each(len(input_items[0]))
return len(output_items[0])