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Piotr Krysikd890cd32017-09-19 07:52:34 +02001#!/usr/bin/env python
2# -*- coding: utf-8 -*-
3# @file
4# @author Piotr Krysik <ptrkrysik@gmail.com>
5# @section LICENSE
6#
7# Gr-gsm is free software; you can redistribute it and/or modify
8# it under the terms of the GNU General Public License as published by
9# the Free Software Foundation; either version 3, or (at your option)
10# any later version.
11#
12# Gr-gsm is distributed in the hope that it will be useful,
13# but WITHOUT ANY WARRANTY; without even the implied warranty of
14# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15# GNU General Public License for more details.
16#
17# You should have received a copy of the GNU General Public License
18# along with gr-gsm; see the file COPYING. If not, write to
19# the Free Software Foundation, Inc., 51 Franklin Street,
20# Boston, MA 02110-1301, USA.
21#
22#
23from math import floor, ceil
24from random import uniform
25
26__hyper_frame = 26*51*2048
27__symb_rate = 13.0e6/48.0
28__ts_period = 156.25/__symb_rate
29__frame_period = 8*__ts_period
30
31#The functions below are crucial part of synchronization between
32#transmitter and receiver.
33
34#fnmod_delta computes difference between two frame numbers modulo
35#__hyper_frame. The result is correct if difference between the frame
36#numbers is not bigger than __hyper_frame/2.
37def fnmod_delta(fn1, fn2):
38 h2 = __hyper_frame/2
39 delta = (fn1%__hyper_frame)-(fn2%__hyper_frame)
40
41 if delta >= h2:
42 delta = delta - __hyper_frame
43 elif delta < -h2:
44 delta = delta + __hyper_frame
45
46 return delta
47
48#fn_time_delta computes difference between reference frame number and a second frame number. It also computes timestamp of the second frame number. The full list of parameters is following:
49#* fn_ref - reference frame number modulo __hyper_frame
50#* time_ref - precise timestamp of the first sample in the frame fn_ref
51#* fn_x - second frame number modulo __hyper_frame,
52#* time_hint - coarse time for fn_x that is used as a hint to avoid ambiguities caused by modulo operation applied to frame numbers. The correct are values from range <time2_precise-__hiperframe/2, time2_precise+__hiperframe/2> (where time2_precise is exact time of the first sample in frame fn_x)
53#* ts_num - number of timeslot in the frame
54
55def fn_time_delta(fn_ref, time_ref, fn_x, time_hint=None, ts_num=None):
56 if time_hint is None:
57 time_hint = time_ref
58
59 if ts_num is None:
60 ts_num = 0
61
62 time_diff = time_hint-time_ref
63 frames_diff = int(round(time_diff/__frame_period))
64 fn_ref = (fn_ref + frames_diff)
65 fn_delta = fnmod_delta(fn_x,fn_ref)+frames_diff
66 time2_precise = fn_delta*__frame_period+time_ref+ts_num*__ts_period
67
68 return fn_delta, time2_precise
69
70
71if __name__ == "__main__":
72 fn1 = 10000
73 time1 = 10
74 for fn2 in xrange(__hyper_frame/2+fn1-10,__hyper_frame/2*10+fn1+10,10):
75 time2 = time1 + (fn2-fn1)*__frame_period
76 error = uniform(-6200,6200)
77 time2_err = time2+error
78 fn_delta, time2_precise = fn_time_delta(fn1, time1, fn2, time2_err)
79 if fn_delta != fn2-fn1:
80 print "dupa:", fn2, error#, 'fn_delta:'+str(fn_delta), time2, error, frames_diff_h4, (time2-time1)/(__hyper_frame*__frame_period), time_diff_h4_prev, time_diff
81 time_diff = time2 - time2_precise
82 if time_diff > 0.1:
83 print "dupa"
84