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1##
2## This file is part of the libsigrokdecode project.
3##
4## Copyright (C) 2017 Karl Palsson <karlp@etactica.com>
5##
6## Permission is hereby granted, free of charge, to any person obtaining a copy
7## of this software and associated documentation files (the "Software"), to deal
8## in the Software without restriction, including without limitation the rights
9## to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
10## copies of the Software, and to permit persons to whom the Software is
11## furnished to do so, subject to the following conditions:
12##
13## The above copyright notice and this permission notice shall be included in all
14## copies or substantial portions of the Software.
15##
16## THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
17## IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
18## FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
19## AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
20## LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
21## OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
22## SOFTWARE.
23
24import math
25import sigrokdecode as srd
26from .lists import *
27
28class Decoder(srd.Decoder):
b197383c 29 api_version = 3
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30 id = 'ade77xx'
31 name = 'ADE77xx'
32 longname = 'Analog Devices ADE77xx'
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33 desc = 'Poly phase multifunction energy metering IC protocol.'
34 license = 'mit'
35 inputs = ['spi']
888790e9 36 outputs = ['ade77xx']
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37 annotations = (
38 ('read', 'Register read commands'),
39 ('write', 'Register write commands'),
40 ('warning', 'Warnings'),
41 )
42 annotation_rows = (
43 ('read', 'Read', (0,)),
44 ('write', 'Write', (1,)),
45 ('warnings', 'Warnings', (2,)),
46 )
47
1f953c5d 48 def reset_data(self):
e439018a 49 self.expected = 0
abf9deff 50 self.mosi_bytes, self.miso_bytes = [], []
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51
52 def __init__(self):
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53 self.reset()
54
55 def reset(self):
e439018a 56 self.ss_cmd, self.es_cmd = 0, 0
1f953c5d 57 self.reset_data()
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58
59 def start(self):
60 self.out_ann = self.register(srd.OUTPUT_ANN)
61
62 def putx(self, data):
63 self.put(self.ss_cmd, self.es_cmd, self.out_ann, data)
64
65 def put_warn(self, pos, msg):
66 self.put(pos[0], pos[1], self.out_ann, [2, [msg]])
67
68 def decode(self, ss, es, data):
69 ptype = data[0]
70 if ptype == 'CS-CHANGE':
71 # Bear in mind, that CS is optional according to the datasheet.
72 # If we transition high mid-stream, toss out our data and restart.
73 cs_old, cs_new = data[1:]
74 if cs_old is not None and cs_old == 0 and cs_new == 1:
75 if len(self.mosi_bytes) > 0 and len(self.mosi_bytes[1:]) < self.expected:
76 # Mark short read/write for reg at least!
77 self.es_cmd = es
abf9deff 78 write, reg = self.cmd & 0x80, self.cmd & 0x7f
e439018a 79 rblob = regs.get(reg)
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80 idx = 1 if write else 0
81 self.putx([idx, ['%s: %s' % (rblob[0], "SHORT")]])
e439018a 82 self.put_warn([self.ss_cmd, es], "Short transfer!")
1f953c5d 83 self.reset_data()
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84 return
85
86 # Don't care about anything else.
87 if ptype != 'DATA':
88 return
89 mosi, miso = data[1:]
90
91 if len(self.mosi_bytes) == 0:
92 self.ss_cmd = ss
93 self.mosi_bytes.append(mosi)
94 self.miso_bytes.append(miso)
95
96 # A transfer is 2-4 bytes, (command + 1..3 byte reg).
97 if len(self.mosi_bytes) < 2:
98 return
99
100 self.cmd = self.mosi_bytes[0]
abf9deff 101 write, reg = self.cmd & 0x80, self.cmd & 0x7f
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102 rblob = regs.get(reg)
103 if not rblob:
104 # If you don't have CS, this will _destroy_ comms!
105 self.put_warn([self.ss_cmd, es], 'Unknown register!')
106 return
107
108 self.expected = math.ceil(rblob[3] / 8)
109 if len(self.mosi_bytes[1:]) != self.expected:
110 return
abf9deff 111 valo, vali = None, None
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112 self.es_cmd = es
113 if self.expected == 3:
114 valo = self.mosi_bytes[1] << 16 | self.mosi_bytes[2] << 8 | \
115 self.mosi_bytes[3]
116 vali = self.miso_bytes[1] << 16 | self.miso_bytes[2] << 8 | \
117 self.miso_bytes[3]
118 elif self.expected == 2:
119 valo = self.mosi_bytes[1] << 8 | self.mosi_bytes[2]
120 vali = self.miso_bytes[1] << 8 | self.miso_bytes[2]
121 elif self.expected == 1:
122 valo = self.mosi_bytes[1]
123 vali = self.miso_bytes[1]
124
125 if write:
126 self.putx([1, ['%s: %#x' % (rblob[0], valo)]])
127 else:
128 self.putx([0, ['%s: %#x' % (rblob[0], vali)]])
abf9deff 129
1f953c5d 130 self.reset_data()