]> sigrok.org Git - libsigrokdecode.git/blame - decoders/onewire_network/pd.py
license: remove FSF postal address from boiler plate license text
[libsigrokdecode.git] / decoders / onewire_network / pd.py
CommitLineData
9cfb16e8 1##
50bd5d25 2## This file is part of the libsigrokdecode project.
9cfb16e8
IJ
3##
4## Copyright (C) 2012 Iztok Jeras <iztok.jeras@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 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
4539e9ca 17## along with this program; if not, see <http://www.gnu.org/licenses/>.
9cfb16e8
IJ
18##
19
9cfb16e8
IJ
20import sigrokdecode as srd
21
6188e4e4 22# Dictionary of ROM commands and their names, next state.
758d2ea9 23command = {
1fe967f2
UH
24 0x33: ['Read ROM' , 'GET ROM' ],
25 0x0f: ['Conditional read ROM' , 'GET ROM' ],
26 0xcc: ['Skip ROM' , 'TRANSPORT' ],
27 0x55: ['Match ROM' , 'GET ROM' ],
28 0xf0: ['Search ROM' , 'SEARCH ROM'],
29 0xec: ['Conditional search ROM', 'SEARCH ROM'],
30 0x3c: ['Overdrive skip ROM' , 'TRANSPORT' ],
31 0x69: ['Overdrive match ROM' , 'GET ROM' ],
758d2ea9 32}
9cfb16e8
IJ
33
34class Decoder(srd.Decoder):
12851357 35 api_version = 2
9cfb16e8
IJ
36 id = 'onewire_network'
37 name = '1-Wire network layer'
6188e4e4 38 longname = '1-Wire serial communication bus (network layer)'
9cfb16e8
IJ
39 desc = 'Bidirectional, half-duplex, asynchronous serial bus.'
40 license = 'gplv2+'
41 inputs = ['onewire_link']
42 outputs = ['onewire_network']
da9bcbd9
BV
43 annotations = (
44 ('text', 'Human-readable text'),
45 )
9cfb16e8 46
92b7b49f 47 def __init__(self):
486b19ce
UH
48 self.ss_block = 0
49 self.es_block = 0
6188e4e4 50 self.state = 'COMMAND'
9cfb16e8 51 self.bit_cnt = 0
6188e4e4
UH
52 self.search = 'P'
53 self.data_p = 0x0
54 self.data_n = 0x0
55 self.data = 0x0
48b59746 56 self.rom = 0x0000000000000000
9cfb16e8 57
8915b346 58 def start(self):
c515eed7 59 self.out_python = self.register(srd.OUTPUT_PYTHON)
be465111 60 self.out_ann = self.register(srd.OUTPUT_ANN)
9cfb16e8 61
6188e4e4
UH
62 def putx(self, data):
63 # Helper function for most annotations.
486b19ce 64 self.put(self.ss_block, self.es_block, self.out_ann, data)
6188e4e4
UH
65
66 def puty(self, data):
67 # Helper function for most protocol packets.
486b19ce 68 self.put(self.ss_block, self.es_block, self.out_python, data)
6188e4e4 69
9cfb16e8 70 def decode(self, ss, es, data):
6188e4e4 71 code, val = data
9cfb16e8
IJ
72
73 # State machine.
6188e4e4
UH
74 if code == 'RESET/PRESENCE':
75 self.search = 'P'
9cfb16e8 76 self.bit_cnt = 0
6188e4e4 77 self.put(ss, es, self.out_ann,
3f302d51 78 [0, ['Reset/presence: %s' % ('true' if val else 'false')]])
c515eed7 79 self.put(ss, es, self.out_python, ['RESET/PRESENCE', val])
6188e4e4 80 self.state = 'COMMAND'
48b59746
UH
81 return
82
83 # For now we're only interested in 'RESET/PRESENCE' and 'BIT' packets.
84 if code != 'BIT':
85 return
86
87 if self.state == 'COMMAND':
88 # Receiving and decoding a ROM command.
89 if self.onewire_collect(8, val, ss, es) == 0:
90 return
91 if self.data in command:
3f302d51 92 self.putx([0, ['ROM command: 0x%02x \'%s\''
48b59746
UH
93 % (self.data, command[self.data][0])]])
94 self.state = command[self.data][1]
9cfb16e8 95 else:
3f302d51
UH
96 self.putx([0, ['ROM command: 0x%02x \'%s\''
97 % (self.data, 'unrecognized')]])
48b59746
UH
98 self.state = 'COMMAND ERROR'
99 elif self.state == 'GET ROM':
100 # A 64 bit device address is selected.
3f302d51 101 # Family code (1 byte) + serial number (6 bytes) + CRC (1 byte)
48b59746
UH
102 if self.onewire_collect(64, val, ss, es) == 0:
103 return
104 self.rom = self.data & 0xffffffffffffffff
105 self.putx([0, ['ROM: 0x%016x' % self.rom]])
106 self.puty(['ROM', self.rom])
107 self.state = 'TRANSPORT'
108 elif self.state == 'SEARCH ROM':
109 # A 64 bit device address is searched for.
3f302d51 110 # Family code (1 byte) + serial number (6 bytes) + CRC (1 byte)
48b59746
UH
111 if self.onewire_search(64, val, ss, es) == 0:
112 return
113 self.rom = self.data & 0xffffffffffffffff
114 self.putx([0, ['ROM: 0x%016x' % self.rom]])
115 self.puty(['ROM', self.rom])
116 self.state = 'TRANSPORT'
117 elif self.state == 'TRANSPORT':
118 # The transport layer is handled in byte sized units.
119 if self.onewire_collect(8, val, ss, es) == 0:
120 return
3f302d51 121 self.putx([0, ['Data: 0x%02x' % self.data]])
48b59746
UH
122 self.puty(['DATA', self.data])
123 elif self.state == 'COMMAND ERROR':
124 # Since the command is not recognized, print raw data.
125 if self.onewire_collect(8, val, ss, es) == 0:
126 return
3f302d51 127 self.putx([0, ['ROM error data: 0x%02x' % self.data]])
9cfb16e8 128
48b59746 129 # Data collector.
6188e4e4
UH
130 def onewire_collect(self, length, val, ss, es):
131 # Storing the sample this sequence begins with.
132 if self.bit_cnt == 1:
486b19ce 133 self.ss_block = ss
9cfb16e8 134 self.data = self.data & ~(1 << self.bit_cnt) | (val << self.bit_cnt)
6188e4e4
UH
135 self.bit_cnt += 1
136 # Storing the sample this sequence ends with.
137 # In case the full length of the sequence is received, return 1.
138 if self.bit_cnt == length:
486b19ce 139 self.es_block = es
6188e4e4
UH
140 self.data = self.data & ((1 << length) - 1)
141 self.bit_cnt = 0
142 return 1
9cfb16e8 143 else:
6188e4e4 144 return 0
9cfb16e8 145
48b59746 146 # Search collector.
6188e4e4
UH
147 def onewire_search(self, length, val, ss, es):
148 # Storing the sample this sequence begins with.
149 if (self.bit_cnt == 0) and (self.search == 'P'):
486b19ce 150 self.ss_block = ss
6188e4e4
UH
151
152 if self.search == 'P':
153 # Master receives an original address bit.
154 self.data_p = self.data_p & ~(1 << self.bit_cnt) | \
155 (val << self.bit_cnt)
156 self.search = 'N'
157 elif self.search == 'N':
158 # Master receives a complemented address bit.
159 self.data_n = self.data_n & ~(1 << self.bit_cnt) | \
160 (val << self.bit_cnt)
161 self.search = 'D'
162 elif self.search == 'D':
163 # Master transmits an address bit.
164 self.data = self.data & ~(1 << self.bit_cnt) | (val << self.bit_cnt)
165 self.search = 'P'
166 self.bit_cnt += 1
167
168 # Storing the sample this sequence ends with.
169 # In case the full length of the sequence is received, return 1.
170 if self.bit_cnt == length:
486b19ce 171 self.es_block = es
6188e4e4
UH
172 self.data_p = self.data_p & ((1 << length) - 1)
173 self.data_n = self.data_n & ((1 << length) - 1)
174 self.data = self.data & ((1 << length) - 1)
175 self.search = 'P'
176 self.bit_cnt = 0
177 return 1
9cfb16e8 178 else:
6188e4e4 179 return 0