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1##
2## This file is part of the libsigrokdecode project.
3##
4## Copyright (C) 2018 Steve R <steversig@virginmedia.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
17## along with this program; if not, see <http://www.gnu.org/licenses/>.
18##
19
20import sigrokdecode as srd
21import math
22from .lists import *
23
24class Decoder(srd.Decoder):
25 api_version = 3
26 id = 'ook_oregon'
27 name = 'Oregon'
28 longname = 'Oregon Scientific'
29 desc = 'Oregon Scientific weather sensor protocol.'
30 license = 'gplv2+'
31 inputs = ['ook']
32 outputs = []
33 annotations = (
34 ('bit', 'Bit'),
35 ('field', 'Field'),
36 ('l2', 'Level 2'),
37 ('pre', 'Preamble'),
38 ('syn', 'Sync'),
39 ('id', 'SensorID'),
40 ('ch', 'Channel'),
41 ('roll', 'Rolling code'),
42 ('f1', 'Flags1'),
43 )
44 annotation_rows = (
45 ('bits', 'Bits', (0,)),
46 ('fields', 'Fields', (1, 3, 4)),
47 ('l2', 'Level 2', (2,)),
48 )
49 binary = (
50 ('data-hex', 'Hex data'),
51 )
52 options = (
53 {'id': 'unknown', 'desc': 'Unknown type is', 'default': 'Unknown',
54 'values': ('Unknown', 'Temp', 'Temp_Hum', 'Temp_Hum1', 'Temp_Hum_Baro',
55 'Temp_Hum_Baro1', 'UV', 'UV1', 'Wind', 'Rain', 'Rain1')},
56 )
57
58 def __init__(self):
59 self.reset()
60
61 def reset(self):
62 self.decoded = [] # Local cache of decoded OOK.
63 self.skip = None
64
65 def start(self):
66 self.out_ann = self.register(srd.OUTPUT_ANN)
67 self.out_binary = self.register(srd.OUTPUT_BINARY)
68 self.unknown = self.options['unknown']
69
70 def putx(self, data):
71 self.put(self.ss, self.es, self.out_ann, data)
72
73 def dump_oregon_hex(self, start, finish):
74 nib = self.decoded_nibbles
75 hexstring = ''
76 for x in nib:
77 if x[3] != '':
78 hexstring += str(x[3])
79 else:
80 hexstring += ' '
81 mystring = 'Oregon ' + self.ver + ' \"' + hexstring.upper() + '\"\n'
82 self.put(start, finish, self.out_binary,
83 [0, bytes([ord(c) for c in mystring])])
84
85 def oregon_put_pre_and_sync(self, len_pream, len_sync, ver):
86 ook = self.decoded
87 self.decode_pos = len_pream
88 self.ss = ook[0][0]
89 self.es = ook[self.decode_pos][0]
90 self.putx([1, ['Oregon ' + ver + ' Preamble', ver + ' Preamble',
91 ver + ' Pre', ver]])
92 self.decode_pos += len_sync
93 self.ss = ook[len_pream][0]
94 self.es = ook[self.decode_pos][0]
95 self.putx([1, ['Sync', 'Syn', 'S']])
96
97 # Strip off preamble and sync bits.
98 self.decoded = self.decoded[self.decode_pos:]
99 self.ookstring = self.ookstring[self.decode_pos:]
100 self.ver = ver
101
102 def oregon(self):
103 self.ookstring = ''
104 self.decode_pos = 0
105 ook = self.decoded
106 for i in range(len(ook)):
107 self.ookstring += ook[i][2]
108 if '10011001' in self.ookstring[:40]:
109 (preamble, data) = self.ookstring.split('10011001', 1)
110 if len(data) > 0 and len(preamble) > 16:
111 self.oregon_put_pre_and_sync(len(preamble), 8, 'v2.1')
112 self.oregon_v2()
113 elif 'E1100' in self.ookstring[:17]:
114 (preamble, data) = self.ookstring.split('E1100', 1)
115 if len(data) > 0 and len(preamble) <= 12:
116 self.oregon_put_pre_and_sync(len(preamble), 5, 'v1')
117 self.oregon_v1()
118 elif '0101' in self.ookstring[:28]:
119 (preamble, data) = self.ookstring.split('0101', 1)
120 if len(data) > 0 and len(preamble) > 12:
121 self.oregon_put_pre_and_sync(len(preamble), 4, 'v3')
122 self.oregon_v3()
123 elif len(self.ookstring) > 16: # Ignore short packets.
124 error_message = 'Not Oregon or wrong preamble'
125 self.ss = ook[0][0]
126 self.es = ook[len(ook)-1][1]
127 self.putx([1,[error_message]])
128
129 def oregon_v1(self):
130 ook = self.decoded
131 self.decode_pos = 0
132 self.decoded_nibbles = []
133 if len(self.decoded) >= 32: # Check there are at least 8 nibbles.
134 self.oregon_put_nib('RollingCode', ook[self.decode_pos][0],
135 ook[self.decode_pos + 3][1], 4)
136 self.oregon_put_nib('Ch', ook[self.decode_pos][0],
137 ook[self.decode_pos + 3][1], 4)
138 self.oregon_put_nib('Temp', ook[self.decode_pos][0],
139 ook[self.decode_pos + 15][1], 16)
140 self.oregon_put_nib('Checksum', ook[self.decode_pos][0],
141 ook[self.decode_pos + 7][1], 8)
142
143 self.dump_oregon_hex(ook[0][0], ook[len(ook) - 1][1])
144
145 # L2 decode.
146 self.oregon_temp(2)
147 self.oregon_channel(1)
148 self.oregon_battery(2)
149 self.oregon_checksum_v1()
150
151 def oregon_v2(self): # Convert to v3 format - discard odd bits.
152 self.decode_pos = 0
153 self.ookstring = self.ookstring[1::2]
154 for i in range(len(self.decoded)):
155 if i % 2 == 1:
156 self.decoded[i][0] = self.decoded[i - 1][0] # Re-align start pos.
157 self.decoded = self.decoded[1::2] # Discard left hand bits.
158 self.oregon_v3() # Decode with v3 decoder.
159
160 def oregon_nibbles(self, ookstring):
161 num_nibbles = int(len(ookstring) / 4)
162 nibbles = []
163 for i in range(num_nibbles):
164 nibble = ookstring[4 * i : 4 * i + 4]
165 nibble = nibble[::-1] # Reversed from right.
166 nibbles.append(nibble)
167 return nibbles
168
169 def oregon_put_nib(self, label, start, finish, numbits):
170 param = self.ookstring[self.decode_pos:self.decode_pos + numbits]
171 param = self.oregon_nibbles(param)
172 if 'E' in ''.join(param): # Blank out fields with errors.
173 result = ''
174 else:
175 result = hex(int(''.join(param), 2))[2:]
176 if len(result) < numbits / 4: # Reinstate leading zeros.
177 result = '0' * (int(numbits / 4) - len(result)) + result
178 if label != '':
179 label += ': '
180 self.put(start, finish, self.out_ann, [1, [label + result, result]])
181 if label == '': # No label - use nibble position.
182 label = int(self.decode_pos / 4)
183 for i in range(len(param)):
184 ss = self.decoded[self.decode_pos + (4 * i)][0]
185 es = self.decoded[self.decode_pos + (4 * i) + 3][1]
186 if 'E' in param[i]: # Blank out nibbles with errors.
187 result = ''
188 else:
189 result = hex(int(param[i], 2))[2:]
190 # Save nibbles for L2 decoder.
191 self.decoded_nibbles.append([ss, es, label, result])
192 self.decode_pos += numbits
193
194 def oregon_v3(self):
195 self.decode_pos = 0
196 self.decoded_nibbles = []
197 ook = self.decoded
198
199 if len(self.decoded) >= 32: # Check there are at least 8 nibbles.
200 self.oregon_put_nib('SensorID', ook[self.decode_pos][0],
201 ook[self.decode_pos + 16][0], 16)
202 self.oregon_put_nib('Ch', ook[self.decode_pos][0],
203 ook[self.decode_pos + 3][1], 4)
204 self.oregon_put_nib('RollingCode', ook[self.decode_pos][0],
205 ook[self.decode_pos + 7][1], 8)
206 self.oregon_put_nib('Flags1', ook[self.decode_pos][0],
207 ook[self.decode_pos + 3][1], 4)
208
209 rem_nibbles = len(self.ookstring[self.decode_pos:]) // 4
210 for i in range(rem_nibbles): # Display and save rest of nibbles.
211 self.oregon_put_nib('', ook[self.decode_pos][0],
212 ook[self.decode_pos + 3][1], 4)
213 self.dump_oregon_hex(ook[0][0], ook[len(ook) - 1][1])
214 self.oregon_level2() # Level 2 decode.
215 else:
216 error_message = 'Too short to decode'
217 self.put(ook[0][0], ook[-1][1], self.out_ann, [1, [error_message]])
218
219 def oregon_put_l2_param(self, offset, digits, dec_point, pre_label, label):
220 nib = self.decoded_nibbles
221 result = 0
222 out_string = ''.join(str(x[3]) for x in nib[offset:offset + digits])
223 if len(out_string) == digits:
224 for i in range(dec_point, 0, -1):
225 result += int(nib[offset + dec_point - i][3], 16) / pow(10, i)
226 for i in range(dec_point, digits):
227 result += int(nib[offset + i][3], 16) * pow(10, i - dec_point)
228 result = '%g' % (result)
229 else:
230 result = ''
231 es = nib[offset + digits - 1][1]
232 if label == '\u2103':
233 es = nib[offset + digits][1] # Align temp to include +/- nibble.
234 self.put(nib[offset][0], es, self.out_ann,
235 [2, [pre_label + result + label, result]])
236
237 def oregon_temp(self, offset):
238 nib = self.decoded_nibbles
239 if nib[offset + 3][3] != '':
240 temp_sign = str(int(nib[offset + 3][3], 16))
241 if temp_sign != '0':
242 temp_sign = '-'
243 else:
244 temp_sign = '+'
245 else:
246 temp_sign = '?'
247 self.oregon_put_l2_param(offset, 3, 1, temp_sign, '\u2103')
248
249 def oregon_baro(self, offset):
250 nib = self.decoded_nibbles
251 baro = ''
252 if not (nib[offset + 2][3] == '' or nib[offset + 1][3] == ''
253 or nib[offset][3] == ''):
254 baro = str(int(nib[offset + 1][3] + nib[offset][3], 16) + 856)
255 self.put(nib[offset][0], nib[offset + 3][1],
256 self.out_ann, [2, [baro + ' mb', baro]])
257
258 def oregon_wind_dir(self, offset):
259 nib = self.decoded_nibbles
260 if nib[offset][3] != '':
261 w_dir = int(int(nib[offset][3], 16) * 22.5)
262 w_compass = dir_table[math.floor((w_dir + 11.25) / 22.5)]
263 self.put(nib[offset][0], nib[offset][1], self.out_ann,
264 [2, [w_compass + ' (' + str(w_dir) + '\u00b0)', w_compass]])
265
266 def oregon_channel(self, offset):
267 nib = self.decoded_nibbles
268 channel = ''
269 if nib[offset][3] != '':
270 ch = int(nib[offset][3], 16)
271 if self.ver != 'v3': # May not be true for all v2.1 sensors.
272 if ch != 0:
273 bit_pos = 0
274 while ((ch & 1) == 0):
275 bit_pos += 1
276 ch = ch >> 1
277 if self.ver == 'v2.1':
278 bit_pos += 1
279 channel = str(bit_pos)
280 elif self.ver == 'v3': # Not sure if this applies to all v3's.
281 channel = str(ch)
282 if channel != '':
283 self.put(nib[offset][0], nib[offset][1],
284 self.out_ann, [2, ['Ch ' + channel, channel]])
285
286 def oregon_battery(self, offset):
287 nib = self.decoded_nibbles
288 batt = 'OK'
289 if nib[offset][3] != '':
290 if (int(nib[offset][3], 16) >> 2) & 0x1 == 1:
291 batt = 'Low'
292 self.put(nib[offset][0], nib[offset][1],
293 self.out_ann, [2, ['Batt ' + batt, batt]])
294
295 def oregon_level2(self): # v2 and v3 level 2 decoder.
296 nib = self.decoded_nibbles
297 self.sensor_id = (nib[0][3] + nib[1][3] + nib[2][3] + nib[3][3]).upper()
298 nl, sensor_type = sensor.get(self.sensor_id, [['Unknown'], 'Unknown'])
299 names = ','.join(nl)
300 # Allow user to try decoding an unknown sensor.
301 if sensor_type == 'Unknown' and self.unknown != 'Unknown':
302 sensor_type = self.unknown
303 self.put(nib[0][0], nib[3][1], self.out_ann,
304 [2, [names + ' - ' + sensor_type, names, nl[0]]])
305 self.oregon_channel(4)
306 self.oregon_battery(7)
307 if sensor_type == 'Rain':
308 self.oregon_put_l2_param(8, 4, 2, '', ' in/hr') # Rain rate
309 self.oregon_put_l2_param(12, 6, 3, 'Total ', ' in') # Rain total
310 self.oregon_checksum(18)
311 if sensor_type == 'Rain1':
312 self.oregon_put_l2_param(8, 3, 1, '', ' mm/hr') # Rain rate
313 self.oregon_put_l2_param(11, 5, 1, 'Total ', ' mm') # Rain total
314 self.oregon_checksum(18)
315 if sensor_type == 'Temp':
316 self.oregon_temp(8)
317 self.oregon_checksum(12)
318 if sensor_type == 'Temp_Hum_Baro':
319 self.oregon_temp(8)
320 self.oregon_put_l2_param(12, 2, 0, 'Hum ', '%') # Hum
321 self.oregon_baro(15) # Baro
322 self.oregon_checksum(19)
323 if sensor_type == 'Temp_Hum_Baro1':
324 self.oregon_temp(8)
325 self.oregon_put_l2_param(12, 2, 0, 'Hum ', '%') # Hum
326 self.oregon_baro(14) # Baro
327 if sensor_type == 'Temp_Hum':
328 self.oregon_temp(8)
329 self.oregon_put_l2_param(12, 2, 0, 'Hum ', '%') # Hum
330 self.oregon_checksum(15)
331 if sensor_type == 'Temp_Hum1':
332 self.oregon_temp(8)
333 self.oregon_put_l2_param(12, 2, 0, 'Hum ', '%') # Hum
334 self.oregon_checksum(14)
335 if sensor_type == 'UV':
336 self.oregon_put_l2_param(8, 2, 0, '', '') # UV
337 if sensor_type == 'UV1':
338 self.oregon_put_l2_param(11, 2, 0,'' ,'') # UV
339 if sensor_type == 'Wind':
340 self.oregon_wind_dir(8)
341 self.oregon_put_l2_param(11, 3, 1, 'Gust ', ' m/s') # Wind gust
342 self.oregon_put_l2_param(14, 3, 1, 'Speed ', ' m/s') # Wind speed
343 self.oregon_checksum(17)
344
345 def oregon_put_checksum(self, nibbles, checksum):
346 nib = self.decoded_nibbles
347 result = 'BAD'
348 if (nibbles + 1) < len(nib):
349 if (nib[nibbles + 1][3] != '' and nib[nibbles][3] != ''
350 and checksum != -1):
351 if self.ver != 'v1':
352 if checksum == (int(nib[nibbles + 1][3], 16) * 16 +
353 int(nib[nibbles][3], 16)):
354 result = 'OK'
355 else:
356 if checksum == (int(nib[nibbles][3], 16) * 16 +
357 int(nib[nibbles+1][3], 16)):
358 result = 'OK'
359 rx_check = (nib[nibbles + 1][3] + nib[nibbles][3]).upper()
360 details = '%s Calc %s Rx %s ' % (result, hex(checksum)[2:].upper(),
361 rx_check)
362 self.put(nib[nibbles][0], nib[nibbles + 1][1],
363 self.out_ann, [2, ['Checksum ' + details, result]])
364
365 def oregon_checksum(self, nibbles):
366 checksum = 0
367 for i in range(nibbles): # Add reversed nibbles.
368 nibble = self.ookstring[i * 4 : i * 4 + 4]
369 nibble = nibble[::-1] # Reversed from right.
370 if 'E' in nibble: # Abort checksum if there are errors.
371 checksum = -1
372 break
373 checksum += int(nibble, 2)
374 if checksum > 255:
375 checksum -= 255 # Make it roll over at 255.
376 chk_ver, comment = sensor_checksum.get(self.sensor_id,
377 ['Unknown', 'Unknown'])
378 if chk_ver != 'Unknown':
379 self.ver = chk_ver
380 if self.ver == 'v2.1':
381 checksum -= 10 # Subtract 10 from v2 checksums.
382 self.oregon_put_checksum(nibbles, checksum)
383
384 def oregon_checksum_v1(self):
385 nib = self.decoded_nibbles
386 checksum = 0
387 for i in range(3): # Add the first three bytes.
388 if nib[2 * i][3] == '' or nib[2 * i + 1][3] == '': # Abort if blank.
389 checksum = -1
390 break
391 checksum += ((int(nib[2 * i][3], 16) & 0xF) << 4 |
392 (int(nib[2 * i + 1][3], 16) & 0xF))
393 if checksum > 255:
394 checksum -= 255 # Make it roll over at 255.
395 self.oregon_put_checksum(6, checksum)
396
397 def decode(self, ss, es, data):
398 self.decoded = data
399 self.oregon()