Imported Upstream version 3.2.2
[debian/gnuradio] / gnuradio-core / src / python / gnuradio / blks2impl / dqpsk.py
1 #
2 # Copyright 2005,2006,2007 Free Software Foundation, Inc.
3
4 # This file is part of GNU Radio
5
6 # GNU Radio is free software; you can redistribute it and/or modify
7 # it under the terms of the GNU General Public License as published by
8 # the Free Software Foundation; either version 3, or (at your option)
9 # any later version.
10
11 # GNU Radio is distributed in the hope that it will be useful,
12 # but WITHOUT ANY WARRANTY; without even the implied warranty of
13 # MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14 # GNU General Public License for more details.
15
16 # You should have received a copy of the GNU General Public License
17 # along with GNU Radio; see the file COPYING.  If not, write to
18 # the Free Software Foundation, Inc., 51 Franklin Street,
19 # Boston, MA 02110-1301, USA.
20
21
22 # See gnuradio-examples/python/digital for examples
23
24 """
25 differential QPSK modulation and demodulation.
26 """
27
28 from gnuradio import gr, gru, modulation_utils
29 from math import pi, sqrt
30 import psk
31 import cmath
32 from pprint import pprint
33
34 # default values (used in __init__ and add_options)
35 _def_samples_per_symbol = 2
36 _def_excess_bw = 0.35
37 _def_gray_code = True
38 _def_verbose = False
39 _def_log = False
40
41 _def_costas_alpha = 0.15
42 _def_gain_mu = None
43 _def_mu = 0.5
44 _def_omega_relative_limit = 0.005
45
46
47 # /////////////////////////////////////////////////////////////////////////////
48 #                           DQPSK modulator
49 # /////////////////////////////////////////////////////////////////////////////
50
51 class dqpsk_mod(gr.hier_block2):
52
53     def __init__(self,
54                  samples_per_symbol=_def_samples_per_symbol,
55                  excess_bw=_def_excess_bw,
56                  gray_code=_def_gray_code,
57                  verbose=_def_verbose,
58                  log=_def_log):
59         """
60         Hierarchical block for RRC-filtered QPSK modulation.
61
62         The input is a byte stream (unsigned char) and the
63         output is the complex modulated signal at baseband.
64
65         @param samples_per_symbol: samples per symbol >= 2
66         @type samples_per_symbol: integer
67         @param excess_bw: Root-raised cosine filter excess bandwidth
68         @type excess_bw: float
69         @param gray_code: Tell modulator to Gray code the bits
70         @type gray_code: bool
71         @param verbose: Print information about modulator?
72         @type verbose: bool
73         @param debug: Print modualtion data to files?
74         @type debug: bool
75         """
76
77         gr.hier_block2.__init__(self, "dqpsk_mod",
78                                 gr.io_signature(1, 1, gr.sizeof_char),       # Input signature
79                                 gr.io_signature(1, 1, gr.sizeof_gr_complex)) # Output signature
80
81         self._samples_per_symbol = samples_per_symbol
82         self._excess_bw = excess_bw
83         self._gray_code = gray_code
84
85         if not isinstance(samples_per_symbol, int) or samples_per_symbol < 2:
86             raise TypeError, ("sbp must be an integer >= 2, is %d" % samples_per_symbol)
87
88         ntaps = 11 * samples_per_symbol
89  
90         arity = pow(2,self.bits_per_symbol())
91
92         # turn bytes into k-bit vectors
93         self.bytes2chunks = \
94           gr.packed_to_unpacked_bb(self.bits_per_symbol(), gr.GR_MSB_FIRST)
95
96         if self._gray_code:
97             self.symbol_mapper = gr.map_bb(psk.binary_to_gray[arity])
98         else:
99             self.symbol_mapper = gr.map_bb(psk.binary_to_ungray[arity])
100             
101         self.diffenc = gr.diff_encoder_bb(arity)
102
103         rot = .707 + .707j
104         rotated_const = map(lambda pt: pt * rot, psk.constellation[arity])
105         self.chunks2symbols = gr.chunks_to_symbols_bc(rotated_const)
106
107         # pulse shaping filter
108         self.rrc_taps = gr.firdes.root_raised_cosine(
109             self._samples_per_symbol, # gain  (sps since we're interpolating by sps)
110             self._samples_per_symbol, # sampling rate
111             1.0,                      # symbol rate
112             self._excess_bw,          # excess bandwidth (roll-off factor)
113             ntaps)
114
115         self.rrc_filter = gr.interp_fir_filter_ccf(self._samples_per_symbol, self.rrc_taps)
116
117         if verbose:
118             self._print_verbage()
119         
120         if log:
121             self._setup_logging()
122             
123         # Connect & Initialize base class
124         self.connect(self, self.bytes2chunks, self.symbol_mapper, self.diffenc,
125                      self.chunks2symbols, self.rrc_filter, self)
126
127     def samples_per_symbol(self):
128         return self._samples_per_symbol
129
130     def bits_per_symbol(self=None):   # staticmethod that's also callable on an instance
131         return 2
132     bits_per_symbol = staticmethod(bits_per_symbol)      # make it a static method.  RTFM
133
134     def _print_verbage(self):
135         print "\nModulator:"
136         print "bits per symbol:     %d" % self.bits_per_symbol()
137         print "Gray code:           %s" % self._gray_code
138         print "RRS roll-off factor: %f" % self._excess_bw
139
140     def _setup_logging(self):
141         print "Modulation logging turned on."
142         self.connect(self.bytes2chunks,
143                      gr.file_sink(gr.sizeof_char, "tx_bytes2chunks.dat"))
144         self.connect(self.symbol_mapper,
145                      gr.file_sink(gr.sizeof_char, "tx_graycoder.dat"))
146         self.connect(self.diffenc,
147                      gr.file_sink(gr.sizeof_char, "tx_diffenc.dat"))        
148         self.connect(self.chunks2symbols,
149                      gr.file_sink(gr.sizeof_gr_complex, "tx_chunks2symbols.dat"))
150         self.connect(self.rrc_filter,
151                      gr.file_sink(gr.sizeof_gr_complex, "tx_rrc_filter.dat"))
152
153     def add_options(parser):
154         """
155         Adds QPSK modulation-specific options to the standard parser
156         """
157         parser.add_option("", "--excess-bw", type="float", default=_def_excess_bw,
158                           help="set RRC excess bandwith factor [default=%default] (PSK)")
159         parser.add_option("", "--no-gray-code", dest="gray_code",
160                           action="store_false", default=_def_gray_code,
161                           help="disable gray coding on modulated bits (PSK)")
162     add_options=staticmethod(add_options)
163
164
165     def extract_kwargs_from_options(options):
166         """
167         Given command line options, create dictionary suitable for passing to __init__
168         """
169         return modulation_utils.extract_kwargs_from_options(dqpsk_mod.__init__,
170                                                             ('self',), options)
171     extract_kwargs_from_options=staticmethod(extract_kwargs_from_options)
172
173
174 # /////////////////////////////////////////////////////////////////////////////
175 #                           DQPSK demodulator
176 #
177 # Differentially coherent detection of differentially encoded qpsk
178 # /////////////////////////////////////////////////////////////////////////////
179
180 class dqpsk_demod(gr.hier_block2):
181
182     def __init__(self, 
183                  samples_per_symbol=_def_samples_per_symbol,
184                  excess_bw=_def_excess_bw,
185                  costas_alpha=_def_costas_alpha,
186                  gain_mu=_def_gain_mu,
187                  mu=_def_mu,
188                  omega_relative_limit=_def_omega_relative_limit,
189                  gray_code=_def_gray_code,
190                  verbose=_def_verbose,
191                  log=_def_log):
192         """
193         Hierarchical block for RRC-filtered DQPSK demodulation
194
195         The input is the complex modulated signal at baseband.
196         The output is a stream of bits packed 1 bit per byte (LSB)
197
198         @param samples_per_symbol: samples per symbol >= 2
199         @type samples_per_symbol: float
200         @param excess_bw: Root-raised cosine filter excess bandwidth
201         @type excess_bw: float
202         @param costas_alpha: loop filter gain
203         @type costas_alphas: float
204         @param gain_mu: for M&M block
205         @type gain_mu: float
206         @param mu: for M&M block
207         @type mu: float
208         @param omega_relative_limit: for M&M block
209         @type omega_relative_limit: float
210         @param gray_code: Tell modulator to Gray code the bits
211         @type gray_code: bool
212         @param verbose: Print information about modulator?
213         @type verbose: bool
214         @param debug: Print modualtion data to files?
215         @type debug: bool
216         """
217
218         gr.hier_block2.__init__(self, "dqpsk_demod",
219                                 gr.io_signature(1, 1, gr.sizeof_gr_complex), # Input signature
220                                 gr.io_signature(1, 1, gr.sizeof_char))       # Output signature
221
222         self._samples_per_symbol = samples_per_symbol
223         self._excess_bw = excess_bw
224         self._costas_alpha = costas_alpha
225         self._mm_gain_mu = gain_mu
226         self._mm_mu = mu
227         self._mm_omega_relative_limit = omega_relative_limit
228         self._gray_code = gray_code
229
230         if samples_per_symbol < 2:
231             raise TypeError, "sbp must be >= 2, is %d" % samples_per_symbol
232
233         arity = pow(2,self.bits_per_symbol())
234  
235         # Automatic gain control
236         scale = (1.0/16384.0)
237         self.pre_scaler = gr.multiply_const_cc(scale)   # scale the signal from full-range to +-1
238         #self.agc = gr.agc2_cc(0.6e-1, 1e-3, 1, 1, 100)
239         self.agc = gr.feedforward_agc_cc(16, 2.0)
240        
241         # RRC data filter
242         ntaps = 11 * samples_per_symbol
243         self.rrc_taps = gr.firdes.root_raised_cosine(
244             1.0,                      # gain
245             self._samples_per_symbol, # sampling rate
246             1.0,                      # symbol rate
247             self._excess_bw,          # excess bandwidth (roll-off factor)
248             ntaps)
249         self.rrc_filter=gr.interp_fir_filter_ccf(1, self.rrc_taps)        
250
251         if not self._mm_gain_mu:
252             sbs_to_mm = {2: 0.050, 3: 0.075, 4: 0.11, 5: 0.125, 6: 0.15, 7: 0.15}
253             self._mm_gain_mu = sbs_to_mm[samples_per_symbol]
254
255         self._mm_omega = self._samples_per_symbol
256         self._mm_gain_omega = .25 * self._mm_gain_mu * self._mm_gain_mu
257         self._costas_beta  = 0.25 * self._costas_alpha * self._costas_alpha
258         fmin = -0.025
259         fmax = 0.025
260         
261         self.receiver=gr.mpsk_receiver_cc(arity, pi/4.0,
262                                           self._costas_alpha, self._costas_beta,
263                                           fmin, fmax,
264                                           self._mm_mu, self._mm_gain_mu,
265                                           self._mm_omega, self._mm_gain_omega,
266                                           self._mm_omega_relative_limit)
267
268         # Perform Differential decoding on the constellation
269         self.diffdec = gr.diff_phasor_cc()
270         
271         # find closest constellation point
272         rot = 1
273         rotated_const = map(lambda pt: pt * rot, psk.constellation[arity])
274         self.slicer = gr.constellation_decoder_cb(rotated_const, range(arity))
275
276         if self._gray_code:
277             self.symbol_mapper = gr.map_bb(psk.gray_to_binary[arity])
278         else:
279             self.symbol_mapper = gr.map_bb(psk.ungray_to_binary[arity])
280         
281         # unpack the k bit vector into a stream of bits
282         self.unpack = gr.unpack_k_bits_bb(self.bits_per_symbol())
283
284         if verbose:
285             self._print_verbage()
286         
287         if log:
288             self._setup_logging()
289  
290         # Connect & Initialize base class
291         self.connect(self, self.pre_scaler, self.agc, self.rrc_filter, self.receiver,
292                      self.diffdec, self.slicer, self.symbol_mapper, self.unpack, self)
293
294     def samples_per_symbol(self):
295         return self._samples_per_symbol
296
297     def bits_per_symbol(self=None):   # staticmethod that's also callable on an instance
298         return 2
299     bits_per_symbol = staticmethod(bits_per_symbol)      # make it a static method.  RTFM
300
301     def _print_verbage(self):
302         print "\nDemodulator:"
303         print "bits per symbol:     %d"   % self.bits_per_symbol()
304         print "Gray code:           %s"   % self._gray_code
305         print "RRC roll-off factor: %.2f" % self._excess_bw
306         print "Costas Loop alpha:   %.2e" % self._costas_alpha
307         print "Costas Loop beta:    %.2e" % self._costas_beta
308         print "M&M mu:              %.2f" % self._mm_mu
309         print "M&M mu gain:         %.2e" % self._mm_gain_mu
310         print "M&M omega:           %.2f" % self._mm_omega
311         print "M&M omega gain:      %.2e" % self._mm_gain_omega
312         print "M&M omega limit:     %.2f" % self._mm_omega_relative_limit
313
314     def _setup_logging(self):
315         print "Modulation logging turned on."
316         self.connect(self.pre_scaler,
317                      gr.file_sink(gr.sizeof_gr_complex, "rx_prescaler.dat"))
318         self.connect(self.agc,
319                      gr.file_sink(gr.sizeof_gr_complex, "rx_agc.dat"))
320         self.connect(self.rrc_filter,
321                      gr.file_sink(gr.sizeof_gr_complex, "rx_rrc_filter.dat"))
322         self.connect(self.receiver,
323                      gr.file_sink(gr.sizeof_gr_complex, "rx_receiver.dat"))
324         self.connect(self.diffdec,
325                      gr.file_sink(gr.sizeof_gr_complex, "rx_diffdec.dat"))        
326         self.connect(self.slicer,
327                      gr.file_sink(gr.sizeof_char, "rx_slicer.dat"))
328         self.connect(self.symbol_mapper,
329                      gr.file_sink(gr.sizeof_char, "rx_gray_decoder.dat"))
330         self.connect(self.unpack,
331                      gr.file_sink(gr.sizeof_char, "rx_unpack.dat"))
332
333     def add_options(parser):
334         """
335         Adds modulation-specific options to the standard parser
336         """
337         parser.add_option("", "--excess-bw", type="float", default=_def_excess_bw,
338                           help="set RRC excess bandwith factor [default=%default] (PSK)")
339         parser.add_option("", "--no-gray-code", dest="gray_code",
340                           action="store_false", default=_def_gray_code,
341                           help="disable gray coding on modulated bits (PSK)")
342         parser.add_option("", "--costas-alpha", type="float", default=_def_costas_alpha,
343                           help="set Costas loop alpha value [default=%default] (PSK)")
344         parser.add_option("", "--gain-mu", type="float", default=_def_gain_mu,
345                           help="set M&M symbol sync loop gain mu value [default=%default] (PSK)")
346         parser.add_option("", "--mu", type="float", default=_def_mu,
347                           help="set M&M symbol sync loop mu value [default=%default] (PSK)")
348     add_options=staticmethod(add_options)
349
350     def extract_kwargs_from_options(options):
351         """
352         Given command line options, create dictionary suitable for passing to __init__
353         """
354         return modulation_utils.extract_kwargs_from_options(
355             dqpsk_demod.__init__, ('self',), options)
356     extract_kwargs_from_options=staticmethod(extract_kwargs_from_options)
357
358
359 #
360 # Add these to the mod/demod registry
361 #
362 modulation_utils.add_type_1_mod('dqpsk', dqpsk_mod)
363 modulation_utils.add_type_1_demod('dqpsk', dqpsk_demod)