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2ab416c2 | 1 | ## |
50bd5d25 | 2 | ## This file is part of the libsigrokdecode project. |
2ab416c2 JH |
3 | ## |
4 | ## Copyright (C) 2012 Joel Holdsworth <joel@airwebreathe.org.uk> | |
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 | ## | |
20 | ||
21 | # I2S protocol decoder | |
22 | ||
23 | import sigrokdecode as srd | |
24 | ||
2ab416c2 JH |
25 | class Decoder(srd.Decoder): |
26 | api_version = 1 | |
27 | id = 'i2s' | |
28 | name = 'I2S' | |
29 | longname = 'Integrated Interchip Sound' | |
a465436e | 30 | desc = 'Serial bus for connecting digital audio devices.' |
2ab416c2 JH |
31 | license = 'gplv2+' |
32 | inputs = ['logic'] | |
33 | outputs = ['i2s'] | |
34 | probes = [ | |
35 | {'id': 'sck', 'name': 'SCK', 'desc': 'Bit clock line'}, | |
36 | {'id': 'ws', 'name': 'WS', 'desc': 'Word select line'}, | |
ee3e279c | 37 | {'id': 'sd', 'name': 'SD', 'desc': 'Serial data line'}, |
2ab416c2 | 38 | ] |
ee3e279c UH |
39 | optional_probes = [] |
40 | options = {} | |
2ab416c2 | 41 | annotations = [ |
29fc3625 UH |
42 | ['left', 'Left channel'], |
43 | ['right', 'Right channel'], | |
44 | ['warnings', 'Warnings'], | |
2ab416c2 JH |
45 | ] |
46 | ||
47 | def __init__(self, **kwargs): | |
48 | self.oldsck = 1 | |
49 | self.oldws = 1 | |
50 | self.bitcount = 0 | |
51 | self.data = 0 | |
52 | self.samplesreceived = 0 | |
780a5bee | 53 | self.first_sample = None |
2ab416c2 | 54 | self.start_sample = None |
abbbd2ba | 55 | self.wordlength = -1 |
2ab416c2 JH |
56 | |
57 | def start(self, metadata): | |
780a5bee | 58 | self.samplerate = metadata['samplerate'] |
2ab416c2 JH |
59 | self.out_proto = self.add(srd.OUTPUT_PROTO, 'i2s') |
60 | self.out_ann = self.add(srd.OUTPUT_ANN, 'i2s') | |
61 | ||
62 | def report(self): | |
780a5bee | 63 | |
ee3e279c | 64 | # Calculate the sample rate. |
780a5bee JH |
65 | samplerate = '?' |
66 | if self.start_sample != None and \ | |
67 | self.first_sample != None and \ | |
68 | self.start_sample > self.first_sample: | |
ee3e279c | 69 | samplerate = '%d' % (self.samplesreceived * |
780a5bee JH |
70 | self.samplerate / (self.start_sample - |
71 | self.first_sample)) | |
72 | ||
73 | return 'I2S: %d %d-bit samples received at %sHz' % \ | |
74 | (self.samplesreceived, self.wordlength, samplerate) | |
2ab416c2 JH |
75 | |
76 | def decode(self, ss, es, data): | |
77 | for samplenum, (sck, ws, sd) in data: | |
78 | ||
79 | # Ignore sample if the bit clock hasn't changed. | |
80 | if sck == self.oldsck: | |
81 | continue | |
82 | ||
83 | self.oldsck = sck | |
ee3e279c | 84 | if sck == 0: # Ignore the falling clock edge. |
2ab416c2 JH |
85 | continue |
86 | ||
87 | self.data = (self.data << 1) | sd | |
88 | self.bitcount += 1 | |
89 | ||
ee3e279c | 90 | # This was not the LSB unless WS has flipped. |
2ab416c2 JH |
91 | if ws == self.oldws: |
92 | continue | |
93 | ||
ee3e279c | 94 | # Only submit the sample, if we received the beginning of it. |
2ab416c2 JH |
95 | if self.start_sample != None: |
96 | self.samplesreceived += 1 | |
b055603b | 97 | self.put(self.start_sample, samplenum, self.out_proto, |
ee3e279c | 98 | ['data', self.data]) |
29fc3625 | 99 | idx = 0 if self.oldws else 1 |
b055603b | 100 | self.put(self.start_sample, samplenum, self.out_ann, |
29fc3625 | 101 | [idx, ['0x%08x', self.data)]]) |
abbbd2ba | 102 | |
ee3e279c | 103 | # Check that the data word was the correct length. |
abbbd2ba | 104 | if self.wordlength != -1 and self.wordlength != self.bitcount: |
b055603b | 105 | self.put(self.start_sample, samplenum, self.out_ann, |
29fc3625 | 106 | [2, ['Received a %d-bit word, when a ' |
abbbd2ba JH |
107 | '%d-bit word was expected' % (self.bitcount, |
108 | self.wordlength)]]) | |
109 | ||
110 | self.wordlength = self.bitcount | |
2ab416c2 JH |
111 | |
112 | # Reset decoder state. | |
113 | self.data = 0 | |
114 | self.bitcount = 0 | |
b055603b | 115 | self.start_sample = samplenum |
780a5bee | 116 | |
ee3e279c | 117 | # Save the first sample position. |
780a5bee | 118 | if self.first_sample == None: |
b055603b | 119 | self.first_sample = samplenum |
780a5bee | 120 | |
2ab416c2 | 121 | self.oldws = ws |
ee3e279c | 122 |