]> sigrok.org Git - libsigrokdecode.git/blame - decoders/transitioncounter/transitioncounter.py
srd: Add 'api_version = 1' to all PDs.
[libsigrokdecode.git] / decoders / transitioncounter / transitioncounter.py
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1##
2## This file is part of the sigrok project.
3##
4## Copyright (C) 2010 Uwe Hermann <uwe@hermann-uwe.de>
5##
6## This program 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 2 of the License, or
9## (at your option) any later version.
10##
11## This program 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 this program; if not, write to the Free Software
18## Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
19##
ad2dc0de 20
677d597b 21import sigrokdecode as srd
1c8ac5bf 22
677d597b 23class Decoder(srd.Decoder):
a2c2afd9 24 api_version = 1
2b7d0e2b 25 id = 'transitioncounter'
b41ae47f 26 name = 'Transition counter'
3d3da57d 27 longname = 'Pin transition counter'
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28 desc = 'Counts rising/falling edges in the signal.'
29 longdesc = '...'
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30 license = 'gplv2+'
31 inputs = ['logic']
32 outputs = ['transitioncounts']
9a12a6e7 33 probes = []
b41ae47f 34 options = {}
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35 annotations = [
36 ['TODO', 'TODO'],
37 ]
b41ae47f 38
3643fc3f 39 def __init__(self, **kwargs):
f9b3b245 40 self.channels = -1
b41ae47f 41 self.lastsample = None
b41ae47f 42
3643fc3f 43 def start(self, metadata):
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44 # self.out_proto = self.add(srd.OUTPUT_PROTO, 'transitioncounter')
45 self.out_ann = self.add(srd.OUTPUT_ANN, 'transitioncounter')
3643fc3f 46
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47 def report(self):
48 pass
49
2b9837d9 50 def decode(self, ss, es, data):
b41ae47f 51
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52 for (samplenum, s) in data:
53
54 # ...
55 if self.channels == -1:
56 self.channels = len(s)
57 self.oldbit = [0] * self.channels
58 self.transitions = [0] * self.channels
59 self.rising = [0] * self.channels
60 self.falling = [0] * self.channels
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61
62 # Optimization: Skip identical samples (no transitions).
63 if self.lastsample == s:
64 continue
65
66 # Upon the first sample, store the initial values.
67 if self.lastsample == None:
68 self.lastsample = s
69 for i in range(self.channels):
f9b3b245 70 self.oldbit[i] = self.lastsample[i]
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71
72 # Iterate over all channels/probes in this sample.
73 # Count rising and falling edges for each channel.
74 for i in range(self.channels):
f9b3b245 75 curbit = s[i]
ad2dc0de 76 # Optimization: Skip identical bits (no transitions).
b41ae47f 77 if self.oldbit[i] == curbit:
ad2dc0de 78 continue
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79 elif (self.oldbit[i] == 0 and curbit == 1):
80 self.rising[i] += 1
81 elif (self.oldbit[i] == 1 and curbit == 0):
82 self.falling[i] += 1
83 self.oldbit[i] = curbit
84
85 # Save the current sample as 'lastsample' for the next round.
86 self.lastsample = s
87
88 # Total number of transitions = rising + falling edges.
89 for i in range(self.channels):
90 self.transitions[i] = self.rising[i] + self.falling[i]
91
92 # TODO: Which output format?
93 # TODO: How to only output something after the last chunk of data?
94 outdata = []
95 for i in range(self.channels):
96 outdata += [[self.transitions[i], self.rising[i], self.falling[i]]]
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97
98 if outdata != []:
c9b24fc3 99 # self.put(0, 0, self.out_proto, out_proto)
dbbee4bf 100 self.put(0, 0, self.out_ann, [0, [str(outdata)]])
2b7d0e2b 101