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Fix obvious typos with string formatters
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1 ##
2 ## This file is part of the libsigrokdecode project.
3 ##
4 ## Copyright (C) 2017 Kevin Redon <kingkevin@cuvoodoo.info>
5 ## Copyright (C) 2017 Soeren Apel <soeren@apelpie.net>
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, see <http://www.gnu.org/licenses/>.
19 ##
20
21 import sigrokdecode as srd
22
23 # Dictionary of FUNCTION commands and their names.
24 commands_2432 = {
25     0x0f: 'Write scratchpad',
26     0xaa: 'Read scratchpad',
27     0x55: 'Copy scratchpad',
28     0xf0: 'Read memory',
29     0x5a: 'Load first secret',
30     0x33: 'Compute next secret',
31     0xa5: 'Read authenticated page',
32 }
33
34 commands_2433 = {
35     0x0f: 'Write scratchpad',
36     0xaa: 'Read scratchpad',
37     0x55: 'Copy scratchpad',
38     0xf0: 'Read memory',
39 }
40
41 # Maxim DS243x family code, present at the end of the ROM code.
42 family_codes = {
43     0x33: ('DS2432', commands_2432),
44     0x23: ('DS2433', commands_2433),
45 }
46
47 # Calculate the CRC-16 checksum.
48 # Initial value: 0x0000, xor-in: 0x0000, polynom 0x8005, xor-out: 0xffff.
49 def crc16(byte_array):
50     reverse = 0xa001 # Use the reverse polynom to make algo simpler.
51     crc = 0x0000 # Initial value.
52     # Reverse CRC calculation.
53     for byte in byte_array:
54         for bit in range(8):
55             if (byte ^ crc) & 1:
56                 crc = (crc >> 1) ^ reverse
57             else:
58                 crc >>= 1
59             byte >>= 1
60     crc ^= 0xffff # Invert CRC.
61     return crc
62
63 class Decoder(srd.Decoder):
64     api_version = 3
65     id = 'ds243x'
66     name = 'DS243x'
67     longname = 'Maxim DS2432/2433'
68     desc = 'Maxim DS243x series 1-Wire EEPROM protocol.'
69     license = 'gplv2+'
70     inputs = ['onewire_network']
71     outputs = ['ds243x']
72     annotations = (
73         ('text', 'Human-readable text'),
74     )
75     binary = (
76         ('mem_read', 'Data read from memory'),
77     )
78
79     def __init__(self):
80         self.reset()
81
82     def reset(self):
83         # Bytes for function command.
84         self.bytes = []
85         self.family_code = None
86         self.family = ''
87         self.commands = commands_2432 # Use max command set until we know better.
88
89     def start(self):
90         self.out_ann = self.register(srd.OUTPUT_ANN)
91         self.out_binary = self.register(srd.OUTPUT_BINARY)
92
93     def putx(self, data):
94         self.put(self.ss, self.es, self.out_ann, data)
95
96     def decode(self, ss, es, data):
97         code, val = data
98
99         if code == 'RESET/PRESENCE':
100             self.ss, self.es = ss, es
101             self.putx([0, ['Reset/presence: %s'
102                            % ('true' if val else 'false')]])
103             self.bytes = []
104         elif code == 'ROM':
105             self.ss, self.es = ss, es
106             self.family_code = val & 0xff
107
108             s = None
109             if self.family_code in family_codes:
110                 self.family, self.commands = family_codes[val & 0xff]
111                 s = 'is 0x%02x, %s detected' % (self.family_code, self.family)
112             else:
113                 s = '0x%02x unknown' % (self.family_code)
114
115             self.putx([0, ['ROM: 0x%016x (%s)' % (val, 'family code ' + s),
116                            'ROM: 0x%016x (%s)' % (val, self.family)]])
117             self.bytes = []
118         elif code == 'DATA':
119             self.bytes.append(val)
120             if 1 == len(self.bytes):
121                 self.ss, self.es = ss, es
122                 if val not in self.commands:
123                     self.putx([0, ['Unrecognized command: 0x%02x' % val]])
124                 else:
125                     self.putx([0, ['Function command: %s (0x%02x)'
126                                    % (self.commands[val], val)]])
127             elif 0x0f == self.bytes[0]: # Write scratchpad
128                 if 2 == len(self.bytes):
129                     self.ss = ss
130                 elif 3 == len(self.bytes):
131                     self.es = es
132                     self.putx([0, ['Target address: 0x%04x'
133                                    % ((self.bytes[2] << 8) + self.bytes[1])]])
134                 elif 4 == len(self.bytes):
135                     self.ss = ss
136                 elif 11 == len(self.bytes):
137                     self.es = es
138                     self.putx([0, ['Data: ' + (','.join(format(n, '#04x')
139                                        for n in self.bytes[3:11]))]])
140                 elif 12 == len(self.bytes):
141                     self.ss = ss
142                 elif 13 == len(self.bytes):
143                     self.es = es
144                     self.putx([0, ['CRC: '
145                         + ('ok' if crc16(self.bytes[0:11]) == (self.bytes[11]
146                         + (self.bytes[12] << 8)) else 'error')]])
147             elif 0xaa == self.bytes[0]: # Read scratchpad
148                 if 2 == len(self.bytes):
149                     self.ss = ss
150                 elif 3 == len(self.bytes):
151                     self.es = es
152                     self.putx([0, ['Target address: 0x%04x'
153                                    % ((self.bytes[2] << 8) + self.bytes[1])]])
154                 elif 4 == len(self.bytes):
155                     self.ss, self.es = ss, es
156                     self.putx([0, ['Data status (E/S): 0x%02x'
157                                    % (self.bytes[3])]])
158                 elif 5 == len(self.bytes):
159                     self.ss = ss
160                 elif 12 == len(self.bytes):
161                     self.es = es
162                     self.putx([0, ['Data: ' + (','.join(format(n, '#04x')
163                                        for n in self.bytes[4:12]))]])
164                 elif 13 == len(self.bytes):
165                     self.ss = ss
166                 elif 14 == len(self.bytes):
167                     self.es = es
168                     self.putx([0, ['CRC: '
169                         + ('ok' if crc16(self.bytes[0:12]) == (self.bytes[12]
170                         + (self.bytes[13] << 8)) else 'error')]])
171             elif 0x5a == self.bytes[0]: # Load first secret
172                 if 2 == len(self.bytes):
173                     self.ss = ss
174                 elif 4 == len(self.bytes):
175                     self.es = es
176                     self.putx([0, ['Authorization pattern (TA1, TA2, E/S): '
177                         + (','.join(format(n, '#04x')
178                             for n in self.bytes[1:4]))]])
179                 elif 4 < len(self.bytes):
180                     self.ss, self.es = ss, es
181                     if (0xaa == self.bytes[-1] or 0x55 == self.bytes[-1]):
182                         self.putx([0, ['End of operation']])
183             elif 0x33 == self.bytes[0]: # Compute next secret
184                 if 2 == len(self.bytes):
185                     self.ss = ss
186                 elif 3 == len(self.bytes):
187                     self.es = es
188                     self.putx([0, ['Target address: 0x%04x'
189                                    % ((self.bytes[2] << 8) + self.bytes[1])]])
190                 elif 3 < len(self.bytes):
191                     self.ss, self.es = ss, es
192                     if (0xaa == self.bytes[-1] or 0x55 == self.bytes[-1]):
193                         self.putx([0, ['End of operation']])
194             elif 0x55 == self.bytes[0]: # Copy scratchpad
195                 if 2 == len(self.bytes):
196                     self.ss = ss
197                 elif 4 == len(self.bytes):
198                     self.es = es
199                     self.putx([0, ['Authorization pattern (TA1, TA2, E/S): '
200                         + (','.join(format(n, '#04x')
201                             for n in self.bytes[1:4]))]])
202                 elif 5 == len(self.bytes):
203                     self.ss = ss
204                 elif 24 == len(self.bytes):
205                     self.es = es
206                     mac = ','.join(format(n, '#04x') for n in self.bytes[4:24])
207                     self.putx([0, ['Message authentication code: ' + mac,
208                                    'MAC: ' + mac]])
209                 elif 24 < len(self.bytes):
210                     self.ss, self.es = ss, es
211                     if (0xaa == self.bytes[-1] or 0x55 == self.bytes[-1]):
212                         self.putx([0, ['Operation succeeded']])
213                     elif (0 == self.bytes[-1]):
214                         self.putx([0, ['Operation failed']])
215             elif 0xa5 == self.bytes[0]: # Read authenticated page
216                 if 2 == len(self.bytes):
217                     self.ss = ss
218                 elif 3 == len(self.bytes):
219                     self.es = es
220                     self.putx([0, ['Target address: 0x%04x'
221                                    % ((self.bytes[2] << 8) + self.bytes[1])]])
222                 elif 4 == len(self.bytes):
223                     self.ss = ss
224                 elif 35 == len(self.bytes):
225                     self.es = es
226                     self.putx([0, ['Data: ' + (','.join(format(n, '#04x')
227                                        for n in self.bytes[3:35]))]])
228                 elif 36 == len(self.bytes):
229                     self.ss, self.es = ss, es
230                     self.putx([0, ['Padding: '
231                         + ('ok' if 0xff == self.bytes[-1] else 'error')]])
232                 elif 37 == len(self.bytes):
233                     self.ss = ss
234                 elif 38 == len(self.bytes):
235                     self.es = es
236                     self.putx([0, ['CRC: '
237                         + ('ok' if crc16(self.bytes[0:36]) == (self.bytes[36]
238                         + (self.bytes[37] << 8)) else 'error')]])
239                 elif 39 == len(self.bytes):
240                     self.ss = ss
241                 elif 58 == len(self.bytes):
242                     self.es = es
243                     mac = ','.join(format(n, '#04x') for n in self.bytes[38:58])
244                     self.putx([0, ['Message authentication code: ' + mac,
245                                    'MAC: ' + mac]])
246                 elif 59 == len(self.bytes):
247                     self.ss = ss
248                 elif 60 == len(self.bytes):
249                     self.es = es
250                     self.putx([0, ['MAC CRC: '
251                         + ('ok' if crc16(self.bytes[38:58]) == (self.bytes[58]
252                         + (self.bytes[59] << 8)) else 'error')]])
253                 elif 60 < len(self.bytes):
254                     self.ss, self.es = ss, es
255                     if (0xaa == self.bytes[-1] or 0x55 == self.bytes[-1]):
256                         self.putx([0, ['Operation completed']])
257             elif 0xf0 == self.bytes[0]: # Read memory
258                 if 2 == len(self.bytes):
259                     self.ss = ss
260                 elif 3 == len(self.bytes):
261                     self.es = es
262                     self.putx([0, ['Target address: 0x%04x'
263                                    % ((self.bytes[2] << 8) + self.bytes[1])]])
264                 elif 3 < len(self.bytes):
265                     self.ss, self.es = ss, es
266                     self.putx([0, ['Data: 0x%02x' % (self.bytes[-1])]])
267
268                     bdata = self.bytes[-1].to_bytes(1, byteorder='big')
269                     self.put(ss, es, self.out_binary, [0, bdata])