]> sigrok.org Git - libsigrokdecode.git/blame - decoders/rgb_led_ws281x/pd.py
decoders: Fix incorrect 'outputs' fields.
[libsigrokdecode.git] / decoders / rgb_led_ws281x / pd.py
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1##
2## This file is part of the libsigrokdecode project.
3##
4## Copyright (C) 2016 Vladimir Ermakov <vooon341@gmail.com>
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 3 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
4539e9ca 17## along with this program; if not, see <http://www.gnu.org/licenses/>.
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18##
19
20import sigrokdecode as srd
21from functools import reduce
22
23class SamplerateError(Exception):
24 pass
25
26class Decoder(srd.Decoder):
7a85bbbe 27 api_version = 3
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28 id = 'rgb_led_ws281x'
29 name = 'RGB LED (WS281x)'
30 longname = 'RGB LED string decoder (WS281x)'
31 desc = 'RGB LED string protocol (WS281x).'
32 license = 'gplv3+'
33 inputs = ['logic']
6cbba91f 34 outputs = []
2787cf2a 35 tags = ['Display', 'IC']
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36 channels = (
37 {'id': 'din', 'name': 'DIN', 'desc': 'DIN data line'},
38 )
39 annotations = (
40 ('bit', 'Bit'),
41 ('reset', 'RESET'),
42 ('rgb', 'RGB'),
43 )
44 annotation_rows = (
45 ('bit', 'Bits', (0, 1)),
46 ('rgb', 'RGB', (2,)),
47 )
48
92b7b49f 49 def __init__(self):
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50 self.reset()
51
52 def reset(self):
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53 self.samplerate = None
54 self.oldpin = None
5b0b88ce 55 self.ss_packet = None
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56 self.ss = None
57 self.es = None
58 self.bits = []
59 self.inreset = False
60
61 def start(self):
62 self.out_ann = self.register(srd.OUTPUT_ANN)
63
64 def metadata(self, key, value):
65 if key == srd.SRD_CONF_SAMPLERATE:
66 self.samplerate = value
67
68 def handle_bits(self, samplenum):
69 if len(self.bits) == 24:
70 grb = reduce(lambda a, b: (a << 1) | b, self.bits)
71 rgb = (grb & 0xff0000) >> 8 | (grb & 0x00ff00) << 8 | (grb & 0x0000ff)
5b0b88ce 72 self.put(self.ss_packet, samplenum, self.out_ann,
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73 [2, ['#%06x' % rgb]])
74 self.bits = []
5b0b88ce 75 self.ss_packet = None
66fc6e7c 76
7a85bbbe 77 def decode(self):
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78 if not self.samplerate:
79 raise SamplerateError('Cannot decode without samplerate.')
80
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81 while True:
82 # TODO: Come up with more appropriate self.wait() conditions.
1b9ef18b 83 (pin,) = self.wait()
7a85bbbe 84
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85 if self.oldpin is None:
86 self.oldpin = pin
87 continue
88
89 # Check RESET condition (manufacturer recommends 50 usec minimal,
90 # but real minimum is ~10 usec).
91 if not self.inreset and not pin and self.es is not None and \
ee60935a 92 (self.samplenum - self.es) / self.samplerate > 50e-6:
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93
94 # Decode last bit value.
95 tH = (self.es - self.ss) / self.samplerate
96 bit_ = True if tH >= 625e-9 else False
97
98 self.bits.append(bit_)
99 self.handle_bits(self.es)
100
101 self.put(self.ss, self.es, self.out_ann, [0, ['%d' % bit_]])
ee60935a 102 self.put(self.es, self.samplenum, self.out_ann,
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103 [1, ['RESET', 'RST', 'R']])
104
105 self.inreset = True
106 self.bits = []
5b0b88ce 107 self.ss_packet = None
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108 self.ss = None
109
110 if not self.oldpin and pin:
111 # Rising edge.
112 if self.ss and self.es:
ee60935a 113 period = self.samplenum - self.ss
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114 duty = self.es - self.ss
115 # Ideal duty for T0H: 33%, T1H: 66%.
116 bit_ = (duty / period) > 0.5
117
ee60935a 118 self.put(self.ss, self.samplenum, self.out_ann,
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119 [0, ['%d' % bit_]])
120
121 self.bits.append(bit_)
ee60935a 122 self.handle_bits(self.samplenum)
66fc6e7c 123
5b0b88ce 124 if self.ss_packet is None:
ee60935a 125 self.ss_packet = self.samplenum
66fc6e7c 126
ee60935a 127 self.ss = self.samplenum
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128
129 elif self.oldpin and not pin:
130 # Falling edge.
131 self.inreset = False
ee60935a 132 self.es = self.samplenum
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133
134 self.oldpin = pin