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Mark all stacked decoders as being PD API version 3.
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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##
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, see <http://www.gnu.org/licenses/>.
18##
19
20import sigrokdecode as srd
21
22class Decoder(srd.Decoder):
b197383c 23 api_version = 3
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24 id = 'eeprom93xx'
25 name = '93xx EEPROM'
26 longname = '93xx Microwire EEPROM'
27 desc = '93xx series Microwire EEPROM protocol.'
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28 license = 'gplv2+'
29 inputs = ['microwire']
e1eacaab 30 outputs = ['eeprom93xx']
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31 options = (
32 {'id': 'addresssize', 'desc': 'Address size', 'default': 8},
33 {'id': 'wordsize', 'desc': 'Word size', 'default': 16},
34 )
35 annotations = (
36 ('si-data', 'SI data'),
37 ('so-data', 'SO data'),
38 ('warning', 'Warning'),
39 )
40 annotation_rows = (
41 ('data', 'Data', (0, 1)),
42 ('warnings', 'Warnings', (2,)),
43 )
44
45 def __init__(self):
46 self.frame = []
47
48 def start(self):
49 self.out_ann = self.register(srd.OUTPUT_ANN)
50 self.addresssize = self.options['addresssize']
51 self.wordsize = self.options['wordsize']
52
53 def put_address(self, data):
54 # Get address (MSb first).
55 a = 0
56 for b in range(len(data)):
941e7a64 57 a += (data[b].si << (len(data) - b - 1))
5f914c47 58 self.put(data[0].ss, data[-1].es, self.out_ann,
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59 [0, ['Address: 0x%x' % a, 'Addr: 0x%x' % a, '0x%x' % a]])
60
61 def put_word(self, si, data):
62 # Decode word (MSb first).
63 word = 0
64 for b in range(len(data)):
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65 d = data[b].si if si else data[b].so
66 word += (d << (len(data) - b - 1))
b13ced31 67 idx = 0 if si else 1
5f914c47 68 self.put(data[0].ss, data[-1].es,
b13ced31 69 self.out_ann, [idx, ['Data: 0x%x' % word, '0x%x' % word]])
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70
71 def decode(self, ss, es, data):
72 if len(data) < (2 + self.addresssize):
73 self.put(ss, es, self.out_ann, [2, ['Not enough packet bits']])
74 return
75
941e7a64 76 opcode = (data[0].si << 1) + (data[1].si << 0)
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77
78 if opcode == 2:
79 # READ instruction.
5f914c47 80 self.put(data[0].ss, data[1].es,
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81 self.out_ann, [0, ['Read word', 'READ']])
82 self.put_address(data[2:2 + self.addresssize])
83
84 # Get all words.
85 word_start = 2 + self.addresssize
86 while len(data) - word_start > 0:
87 # Check if there are enough bits for a word.
88 if len(data) - word_start < self.wordsize:
5f914c47 89 self.put(data[word_start].ss, data[len(data) - 1].es,
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90 self.out_ann, [2, ['Not enough word bits']])
91 break
92 self.put_word(False, data[word_start:word_start + self.wordsize])
93 # Go to next word.
94 word_start += self.wordsize
95 elif opcode == 1:
96 # WRITE instruction.
5f914c47 97 self.put(data[0].ss, data[1].es,
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98 self.out_ann, [0, ['Write word', 'WRITE']])
99 self.put_address(data[2:2 + self.addresssize])
100 # Get word.
101 if len(data) < 2 + self.addresssize + self.wordsize:
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102 self.put(data[2 + self.addresssize].ss,
103 data[len(data) - 1].ss,
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104 self.out_ann, [2, ['Not enough word bits']])
105 else:
106 self.put_word(True, data[2 + self.addresssize:2 + self.addresssize + self.wordsize])
107 elif opcode == 3:
108 # ERASE instruction.
5f914c47 109 self.put(data[0].ss, data[1].es,
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110 self.out_ann, [0, ['Erase word', 'ERASE']])
111 self.put_address(data[2:2 + self.addresssize])
112 elif opcode == 0:
941e7a64 113 if data[2].si == 1 and data[3].si == 1:
3a9c517e 114 # WEN instruction.
5f914c47 115 self.put(data[0].ss, data[2 + self.addresssize - 1].es,
3a9c517e 116 self.out_ann, [0, ['Write enable', 'WEN']])
941e7a64 117 elif data[2].si == 0 and data[3].si == 0:
3a9c517e 118 # WDS instruction.
5f914c47 119 self.put(data[0].ss, data[2 + self.addresssize - 1].es,
3a9c517e 120 self.out_ann, [0, ['Write disable', 'WDS']])
941e7a64 121 elif data[2].si == 1 and data[3].si == 0:
3a9c517e 122 # ERAL instruction.
5f914c47 123 self.put(data[0].ss, data[2 + self.addresssize - 1].es,
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124 self.out_ann, [0, ['Erase all memory',
125 'Erase all', 'ERAL']])
941e7a64 126 elif data[2].si == 0 and data[3].si == 1:
3a9c517e 127 # WRAL instruction.
5f914c47 128 self.put(data[0].ss, data[2 + self.addresssize - 1].es,
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129 self.out_ann, [0, ['Write all memory',
130 'Write all', 'WRAL']])
131 # Get word.
132 if len(data) < 2 + self.addresssize + self.wordsize:
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133 self.put(data[2 + self.addresssize].ss,
134 data[len(data) - 1].ss,
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135 self.out_ann, [2, ['Not enough word bits']])
136 else:
137 self.put_word(True, data[2 + self.addresssize:2 + self.addresssize + self.wordsize])