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All PDs: Drop unneeded exceptions.
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2dc6d41c 1##
50bd5d25 2## This file is part of the libsigrokdecode project.
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3##
4## Copyright (C) 2011 Gareth McMullin <gareth@blacksphere.co.nz>
7d4b5fac 5## Copyright (C) 2012-2013 Uwe Hermann <uwe@hermann-uwe.de>
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6##
7## This program 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 2 of the License, or
10## (at your option) any later version.
11##
12## This program 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 this program; if not, write to the Free Software
19## Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
20##
21
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22import sigrokdecode as srd
23
a56b8fe1 24'''
c515eed7 25OUTPUT_PYTHON format:
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26
27Packet:
28[<ptype>, <pdata>]
29
30<ptype>, <pdata>:
31 - 'SOP', None
32 - 'SYM', <sym>
33 - 'BIT', <bit>
34 - 'STUFF BIT', None
35 - 'EOP', None
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36
37<sym>:
38 - 'J', 'K', 'SE0', or 'SE1'
39
40<bit>:
41 - 0 or 1
42 - Note: Symbols like SE0, SE1, and the J that's part of EOP don't yield 'BIT'.
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43'''
44
d1970f14 45# Low-/full-speed symbols.
2dc6d41c 46# Note: Low-speed J and K are inverted compared to the full-speed J and K!
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47symbols = {
48 'low-speed': {
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49 # (<dp>, <dm>): <symbol/state>
50 (0, 0): 'SE0',
51 (1, 0): 'K',
52 (0, 1): 'J',
53 (1, 1): 'SE1',
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54 },
55 'full-speed': {
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56 # (<dp>, <dm>): <symbol/state>
57 (0, 0): 'SE0',
58 (1, 0): 'J',
59 (0, 1): 'K',
60 (1, 1): 'SE1',
7dc75721 61 },
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62}
63
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64bitrates = {
65 'low-speed': 1500000, # 1.5Mb/s (+/- 1.5%)
66 'full-speed': 12000000, # 12Mb/s (+/- 0.25%)
67}
68
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69sym_idx = {
70 'J': 0,
71 'K': 1,
72 'SE0': 2,
73 'SE1': 3,
74}
75
2dc6d41c 76class Decoder(srd.Decoder):
12851357 77 api_version = 2
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78 id = 'usb_signalling'
79 name = 'USB signalling'
80 longname = 'Universal Serial Bus (LS/FS) signalling'
9e1437a0 81 desc = 'USB (low-speed and full-speed) signalling protocol.'
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82 license = 'gplv2+'
83 inputs = ['logic']
84 outputs = ['usb_signalling']
6a15597a 85 channels = (
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86 {'id': 'dp', 'name': 'D+', 'desc': 'USB D+ signal'},
87 {'id': 'dm', 'name': 'D-', 'desc': 'USB D- signal'},
da9bcbd9 88 )
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89 options = (
90 {'id': 'signalling', 'desc': 'Signalling',
91 'default': 'full-speed', 'values': ('full-speed', 'low-speed')},
92 )
da9bcbd9 93 annotations = (
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94 ('sym-j', 'J symbol'),
95 ('sym-k', 'K symbol'),
96 ('sym-se0', 'SE0 symbol'),
97 ('sym-se1', 'SE1 symbol'),
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98 ('sop', 'Start of packet (SOP)'),
99 ('eop', 'End of packet (EOP)'),
100 ('bit', 'Bit'),
101 ('stuffbit', 'Stuff bit'),
102 )
066d6594 103 annotation_rows = (
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104 ('bits', 'Bits', (4, 5, 6, 7)),
105 ('symbols', 'Symbols', (0, 1, 2, 3)),
066d6594 106 )
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107
108 def __init__(self):
f372d597 109 self.samplerate = None
d1970f14 110 self.oldsym = 'J' # The "idle" state is J.
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111 self.ss_sop = None
112 self.ss_block = None
2dc6d41c 113 self.samplenum = 0
2dc6d41c 114 self.syms = []
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115 self.bitrate = None
116 self.bitwidth = None
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117 self.bitnum = 0
118 self.samplenum_target = None
2fcd7c22 119 self.oldpins = None
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120 self.consecutive_ones = 0
121 self.state = 'IDLE'
2dc6d41c 122
f372d597 123 def start(self):
c515eed7 124 self.out_python = self.register(srd.OUTPUT_PYTHON)
be465111 125 self.out_ann = self.register(srd.OUTPUT_ANN)
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126
127 def metadata(self, key, value):
128 if key == srd.SRD_CONF_SAMPLERATE:
129 self.samplerate = value
130 self.bitrate = bitrates[self.options['signalling']]
131 self.bitwidth = float(self.samplerate) / float(self.bitrate)
132 self.halfbit = int(self.bitwidth / 2)
2dc6d41c 133
d1970f14 134 def putpx(self, data):
c515eed7 135 self.put(self.samplenum, self.samplenum, self.out_python, data)
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136
137 def putx(self, data):
138 self.put(self.samplenum, self.samplenum, self.out_ann, data)
139
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140 def putpm(self, data):
141 s, h = self.samplenum, self.halfbit
c515eed7 142 self.put(self.ss_block - h, s + h, self.out_python, data)
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143
144 def putm(self, data):
145 s, h = self.samplenum, self.halfbit
9059125f 146 self.put(self.ss_block - h, s + h, self.out_ann, data)
fdd5ee5e 147
d1970f14 148 def putpb(self, data):
fdd5ee5e 149 s, h = self.samplenum, self.halfbit
c515eed7 150 self.put(s - h, s + h, self.out_python, data)
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151
152 def putb(self, data):
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153 s, h = self.samplenum, self.halfbit
154 self.put(s - h, s + h, self.out_ann, data)
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155
156 def set_new_target_samplenum(self):
157 bitpos = self.ss_sop + (self.bitwidth / 2)
158 bitpos += self.bitnum * self.bitwidth
159 self.samplenum_target = int(bitpos)
160
161 def wait_for_sop(self, sym):
162 # Wait for a Start of Packet (SOP), i.e. a J->K symbol change.
163 if sym != 'K':
164 self.oldsym = sym
165 return
166 self.ss_sop = self.samplenum
167 self.set_new_target_samplenum()
168 self.putpx(['SOP', None])
85c03d60 169 self.putx([4, ['SOP', 'S']])
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170 self.state = 'GET BIT'
171
172 def handle_bit(self, sym, b):
173 if self.consecutive_ones == 6 and b == '0':
9059125f 174 # Stuff bit.
a56b8fe1 175 self.putpb(['STUFF BIT', None])
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176 self.putb([7, ['Stuff bit: %s' % b, 'SB: %s' % b, '%s' % b]])
177 self.putb([sym_idx[sym], ['%s' % sym]])
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178 self.consecutive_ones = 0
179 else:
9059125f 180 # Normal bit (not a stuff bit).
a56b8fe1 181 self.putpb(['BIT', b])
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182 self.putb([6, ['%s' % b]])
183 self.putb([sym_idx[sym], ['%s' % sym]])
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184 if b == '1':
185 self.consecutive_ones += 1
186 else:
187 self.consecutive_ones = 0
188
189 def get_eop(self, sym):
190 # EOP: SE0 for >= 1 bittime (usually 2 bittimes), then J.
191 self.syms.append(sym)
192 self.putpb(['SYM', sym])
85c03d60 193 self.putb([sym_idx[sym], ['%s' % sym, '%s' % sym[0]]])
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194 self.bitnum += 1
195 self.set_new_target_samplenum()
196 self.oldsym = sym
197 if self.syms[-2:] == ['SE0', 'J']:
9059125f 198 # Got an EOP.
fdd5ee5e 199 self.putpm(['EOP', None])
85c03d60 200 self.putm([5, ['EOP', 'E']])
9059125f 201 self.bitnum, self.syms, self.state = 0, [], 'IDLE'
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202 self.consecutive_ones = 0
203
204 def get_bit(self, sym):
205 if sym == 'SE0':
206 # Start of an EOP. Change state, run get_eop() for this bit.
207 self.state = 'GET EOP'
fdd5ee5e 208 self.ss_block = self.samplenum
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209 self.get_eop(sym)
210 return
211 self.syms.append(sym)
212 self.putpb(['SYM', sym])
213 b = '0' if self.oldsym != sym else '1'
214 self.handle_bit(sym, b)
215 self.bitnum += 1
216 self.set_new_target_samplenum()
217 self.oldsym = sym
218
2dc6d41c 219 def decode(self, ss, es, data):
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220 if self.samplerate is None:
221 raise Exception("Cannot decode without samplerate.")
2fcd7c22 222 for (self.samplenum, pins) in data:
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223 # State machine.
224 if self.state == 'IDLE':
225 # Ignore identical samples early on (for performance reasons).
226 if self.oldpins == pins:
227 continue
228 self.oldpins = pins
229 sym = symbols[self.options['signalling']][tuple(pins)]
230 self.wait_for_sop(sym)
231 elif self.state in ('GET BIT', 'GET EOP'):
232 # Wait until we're in the middle of the desired bit.
233 if self.samplenum < self.samplenum_target:
234 continue
235 sym = symbols[self.options['signalling']][tuple(pins)]
236 if self.state == 'GET BIT':
237 self.get_bit(sym)
238 elif self.state == 'GET EOP':
239 self.get_eop(sym)
2dc6d41c 240