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usb_power_delivery: Drop problematic exception in us2samples().
[libsigrokdecode.git] / decoders / usb_power_delivery / pd.py
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1##
2## This file is part of the libsigrokdecode project.
3##
4## Copyright (C) 2015 Google, Inc
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, write to the Free Software
18## Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
19##
20
21import sigrokdecode as srd
22import struct
23import zlib # for crc32
24
25# BMC encoding with a 600kHz datarate
26UI_US = 1000000/600000.0
27
28# Threshold to discriminate half-1 from 0 in Binary Mark Conding
29THRESHOLD_US = (UI_US + 2 * UI_US) / 2
30
31# Control Message type
32CTRL_TYPES = {
33 0: 'reserved',
34 1: 'GOOD CRC',
35 2: 'GOTO MIN',
36 3: 'ACCEPT',
37 4: 'REJECT',
38 5: 'PING',
39 6: 'PS RDY',
40 7: 'GET SOURCE CAP',
41 8: 'GET SINK CAP',
42 9: 'DR SWAP',
43 10: 'PR SWAP',
44 11: 'VCONN SWAP',
45 12: 'WAIT',
46 13: 'SOFT RESET',
47 14: 'reserved',
48 15: 'reserved'
49}
50
51# Data message type
52DATA_TYPES = {
53 1: 'SOURCE CAP',
54 2: 'REQUEST',
55 3: 'BIST',
56 4: 'SINK CAP',
57 15: 'VDM'
58}
59
60# 4b5b encoding of the symbols
61DEC4B5B = [
62 0x10, # Error 00000
63 0x10, # Error 00001
64 0x10, # Error 00010
65 0x10, # Error 00011
66 0x10, # Error 00100
67 0x10, # Error 00101
68 0x13, # Sync-3 00110
69 0x14, # RST-1 00111
70 0x10, # Error 01000
71 0x01, # 1 = 0001 01001
72 0x04, # 4 = 0100 01010
73 0x05, # 5 = 0101 01011
74 0x10, # Error 01100
75 0x16, # EOP 01101
76 0x06, # 6 = 0110 01110
77 0x07, # 7 = 0111 01111
78 0x10, # Error 10000
79 0x12, # Sync-2 10001
80 0x08, # 8 = 1000 10010
81 0x09, # 9 = 1001 10011
82 0x02, # 2 = 0010 10100
83 0x03, # 3 = 0011 10101
84 0x0A, # A = 1010 10110
85 0x0B, # B = 1011 10111
86 0x11, # Sync-1 11000
87 0x15, # RST-2 11001
88 0x0C, # C = 1100 11010
89 0x0D, # D = 1101 11011
90 0x0E, # E = 1110 11100
91 0x0F, # F = 1111 11101
92 0x00, # 0 = 0000 11110
93 0x10, # Error 11111
94]
95SYM_ERR = 0x10
96SYNC1 = 0x11
97SYNC2 = 0x12
98SYNC3 = 0x13
99RST1 = 0x14
100RST2 = 0x15
101EOP = 0x16
102SYNC_CODES = [SYNC1, SYNC2, SYNC3]
103HRST_CODES = [RST1, RST1, RST1, RST2]
104
105START_OF_PACKETS = {
106 (SYNC1, SYNC1, SYNC1, SYNC2): 'SOP',
107 (SYNC1, SYNC1, SYNC3, SYNC3): "SOP'",
108 (SYNC1, SYNC3, SYNC1, SYNC3): 'SOP"',
109 (SYNC1, RST2, RST2, SYNC3): "SOP' Debug",
110 (SYNC1, RST2, SYNC3, SYNC2): 'SOP" Debug',
111 (RST1, SYNC1, RST1, SYNC3): 'Cable Reset',
112 (RST1, RST1, RST1, RST2): 'Hard Reset',
113}
114
115SYM_NAME = [
116 ['0x0', '0'],
117 ['0x1', '1'],
118 ['0x2', '2'],
119 ['0x3', '3'],
120 ['0x4', '4'],
121 ['0x5', '5'],
122 ['0x6', '6'],
123 ['0x7', '7'],
124 ['0x8', '8'],
125 ['0x9', '9'],
126 ['0xA', 'A'],
127 ['0xB', 'B'],
128 ['0xC', 'C'],
129 ['0xD', 'D'],
130 ['0xE', 'E'],
131 ['0xF', 'F'],
132 ['ERROR', 'X'],
133 ['SYNC-1', 'S1'],
134 ['SYNC-2', 'S2'],
135 ['SYNC-3', 'S3'],
136 ['RST-1', 'R1'],
137 ['RST-2', 'R2'],
138 ['EOP', '#'],
139]
140
141RDO_FLAGS = {
142 (1 << 24): 'no_suspend',
143 (1 << 25): 'comm_cap',
144 (1 << 26): 'cap_mismatch',
145 (1 << 27): 'give_back'
146}
147PDO_TYPE = ['', 'BATT:', 'VAR:', '<bad>']
148PDO_FLAGS = {
149 (1 << 29): 'dual_role_power',
150 (1 << 28): 'suspend',
151 (1 << 27): 'ext',
152 (1 << 26): 'comm_cap',
153 (1 << 25): 'dual_role_data'
154}
155
156BIST_MODES = {
157 0: 'Receiver',
158 1: 'Transmit',
159 2: 'Counters',
160 3: 'Carrier 0',
161 4: 'Carrier 1',
162 5: 'Carrier 2',
163 6: 'Carrier 3',
164 7: 'Eye',
165}
166
167VDM_CMDS = {
168 1: 'Disc Ident',
169 2: 'Disc SVID',
170 3: 'Disc Mode',
171 4: 'Enter Mode',
172 5: 'Exit Mode',
173 6: 'Attention',
174 # 16..31: SVID Specific Commands
175 # DisplayPort Commands
176 16: 'DP Status',
177 17: 'DP Configure',
178}
179VDM_ACK = ['REQ', 'ACK', 'NAK', 'BSY']
180
181class SamplerateError(Exception):
182 pass
183
184class Decoder(srd.Decoder):
185 api_version = 2
186 id = 'usb_power_delivery'
187 name = 'USB PD'
188 longname = 'USB Power Delivery'
189 desc = 'USB Power Delivery protocol.'
190 license = 'gplv2+'
191 inputs = ['logic']
192 outputs = ['usb_pd']
193 channels = (
194 {'id': 'cc', 'name': 'CC', 'desc': 'Control channel'},
195 )
196 options = (
197 {'id': 'fulltext', 'desc': 'full text decoding of the packet',
198 'default': 'no', 'values': ('yes', 'no')},
199 )
200 annotations = (
201 ('type', 'Packet Type'),
202 ('Preamble', 'Preamble'),
203 ('SOP', 'Start of Packet'),
204 ('Head', 'Header'),
205 ('Data', 'Data'),
206 ('CRC', 'Checksum'),
207 ('EOP', 'End Of Packet'),
208 ('Sym', '4b5b symbols'),
209 ('warnings', 'Warnings'),
210 ('src', 'Source Message'),
211 ('snk', 'Sink Message'),
212 ('payload', 'Payload'),
213 ('text', 'Plain text'),
214 )
215 annotation_rows = (
216 ('4B5B', 'symbols', (7, )),
217 ('Phase', 'parts', (1, 2, 3, 4, 5, 6, )),
218 ('payload', 'Payload', (11, )),
219 ('type', 'Type', (0, 9, 10, )),
220 ('warnings', 'Warnings', (8, )),
221 ('text', 'Full text', (12, )),
222 )
223 binary = (
224 ('raw-data', 'RAW binary data'),
225 )
226
227 def get_request(self, rdo):
228 pos = (rdo >> 28) & 7
229 op_ma = ((rdo >> 10) & 0x3ff) * 10
230 max_ma = (rdo & 0x3ff) * 10
231 flags = ''
232 for f in RDO_FLAGS.keys():
233 if rdo & f:
234 flags += ' ' + RDO_FLAGS[f]
235 return '[%d]%d/%d mA%s' % (pos, op_ma, max_ma, flags)
236
237 def get_source_cap(self, pdo):
238 t = (pdo >> 30) & 3
239 if t == 0:
240 mv = ((pdo >> 10) & 0x3ff) * 50
241 ma = ((pdo >> 0) & 0x3ff) * 10
242 p = '%.1fV %.1fA' % (mv/1000.0, ma/1000.0)
243 elif t == 1:
244 minv = ((pdo >> 10) & 0x3ff) * 50
245 maxv = ((pdo >> 20) & 0x3ff) * 50
246 mw = ((pdo >> 0) & 0x3ff) * 250
247 p = '%.1f/%.1fV %.1fW' % (minv/1000.0, maxv/1000.0, mw/1000.0)
248 elif t == 2:
249 minv = ((pdo >> 10) & 0x3ff) * 50
250 maxv = ((pdo >> 20) & 0x3ff) * 50
251 ma = ((pdo >> 0) & 0x3ff) * 10
252 p = '%.1f/%.1fV %.1fA' % (minv/1000.0, maxv/1000.0, ma/1000.0)
253 else:
254 p = ''
255 flags = ''
256 for f in PDO_FLAGS.keys():
257 if pdo & f:
258 flags += ' ' + PDO_FLAGS[f]
259 return '%s%s%s' % (PDO_TYPE[t], p, flags)
260
261 def get_sink_cap(self, pdo):
262 t = (pdo >> 30) & 3
263 if t == 0:
264 mv = ((pdo >> 10) & 0x3ff) * 50
265 ma = ((pdo >> 0) & 0x3ff) * 10
266 p = '%.1fV %.1fA' % (mv/1000.0, ma/1000.0)
267 elif t == 1:
268 minv = ((pdo >> 10) & 0x3ff) * 50
269 maxv = ((pdo >> 20) & 0x3ff) * 50
270 mw = ((pdo >> 0) & 0x3ff) * 250
271 p = '%.1f/%.1fV %.1fW' % (minv/1000.0, maxv/1000.0, mw/1000.0)
272 elif t == 2:
273 minv = ((pdo >> 10) & 0x3ff) * 50
274 maxv = ((pdo >> 20) & 0x3ff) * 50
275 ma = ((pdo >> 0) & 0x3ff) * 10
276 p = '%.1f/%.1fV %.1fA' % (minv/1000.0, maxv/1000.0, ma/1000.0)
277 else:
278 p = ''
279 flags = ''
280 for f in PDO_FLAGS.keys():
281 if pdo & f:
282 flags += ' ' + PDO_FLAGS[f]
283 return '%s%s%s' % (PDO_TYPE[t], p, flags)
284
285 def get_vdm(self, idx, data):
286 if idx == 0: # VDM header
287 vid = data >> 16
288 struct = data & (1 << 15)
289 txt = 'VDM'
290 if struct: # Structured VDM
291 cmd = data & 0x1f
292 src = data & (1 << 5)
293 ack = (data >> 6) & 3
294 pos = (data >> 8) & 7
295 ver = (data >> 13) & 3
296 txt = VDM_ACK[ack] + ' '
297 txt += VDM_CMDS[cmd] if cmd in VDM_CMDS else 'cmd?'
298 txt += ' pos %d' % (pos) if pos else ' '
299 else: # Unstructured VDM
300 txt = 'unstruct [%04x]' % (data & 0x7fff)
301 txt += ' SVID:%04x' % (vid)
302 else: # VDM payload
303 txt = 'VDO:%08x' % (data)
304 return txt
305
306 def get_bist(self, idx, data):
307 mode = data >> 28
308 counter = data & 0xffff
309 mode_name = BIST_MODES[mode] if mode in BIST_MODES else 'INVALID'
310 if mode == 2:
311 mode_name = 'Counter[= %d]' % (counter)
312 # TODO check all 0 bits are 0 / emit warnings
313 return 'mode %s' % (mode_name) if idx == 0 else 'invalid BRO'
314
315 def putpayload(self, s0, s1, idx):
316 t = self.head_type()
317 txt = '???'
318 if t == 2:
319 txt = self.get_request(self.data[idx])
320 elif t == 1:
321 txt = self.get_source_cap(self.data[idx])
322 elif t == 4:
323 txt = self.get_sink_cap(self.data[idx])
324 elif t == 15:
325 txt = self.get_vdm(idx, self.data[idx])
326 elif t == 3:
327 txt = self.get_bist(idx, self.data[idx])
328 self.putx(s0, s1, [11, [txt, txt]])
329 self.text += ' - ' + txt
330
331 def puthead(self):
332 ann_type = 9 if self.head_power_role() else 10
333 role = 'SRC' if self.head_power_role() else 'SNK'
334 if self.head_data_role() != self.head_power_role():
335 role += '/DFP' if self.head_data_role() else '/UFP'
336 t = self.head_type()
337 if self.head_count() == 0:
338 shortm = CTRL_TYPES[t]
339 else:
340 shortm = DATA_TYPES[t] if t in DATA_TYPES else 'DAT???'
341
342 longm = '{:s}[{:d}]:{:s}'.format(role, self.head_id(), shortm)
343 self.putx(0, -1, [ann_type, [longm, shortm]])
344 self.text += longm
345
346 def head_id(self):
347 return (self.head >> 9) & 7
348
349 def head_power_role(self):
350 return (self.head >> 8) & 1
351
352 def head_data_role(self):
353 return (self.head >> 5) & 1
354
355 def head_rev(self):
356 return ((self.head >> 6) & 3) + 1
357
358 def head_type(self):
359 return self.head & 0xF
360
361 def head_count(self):
362 return (self.head >> 12) & 7
363
364 def putx(self, s0, s1, data):
365 self.put(self.edges[s0], self.edges[s1], self.out_ann, data)
366
367 def putwarn(self, longm, shortm):
368 self.putx(0, -1, [8, [longm, shortm]])
369
370 def compute_crc32(self):
371 bdata = struct.pack('<H'+'I'*len(self.data), self.head & 0xffff,
372 *tuple([d & 0xffffffff for d in self.data]))
373 return zlib.crc32(bdata)
374
375 def rec_sym(self, i, sym):
376 self.putx(i, i+5, [7, SYM_NAME[sym]])
377
378 def get_sym(self, i, rec=True):
379 v = (self.bits[i] | (self.bits[i+1] << 1) | (self.bits[i+2] << 2) |
380 (self.bits[i+3] << 3) | (self.bits[i+4] << 4))
381 sym = DEC4B5B[v]
382 if rec:
383 self.rec_sym(i, sym)
384 return sym
385
386 def get_short(self):
387 i = self.idx
388 # Check it's not a truncated packet
389 if len(self.bits) - i <= 20:
390 self.putwarn('Truncated', '!')
391 return 0x0BAD
392 k = [self.get_sym(i), self.get_sym(i+5),
393 self.get_sym(i+10), self.get_sym(i+15)]
394 # TODO check bad symbols
395 val = k[0] | (k[1] << 4) | (k[2] << 8) | (k[3] << 12)
396 self.idx += 20
397 return val
398
399 def get_word(self):
400 lo = self.get_short()
401 hi = self.get_short()
402 return lo | (hi << 16)
403
404 def find_corrupted_sop(self, k):
405 # Start of packet are valid even if they have only 3 correct symbols
406 # out of 4.
407 for seq in START_OF_PACKETS.keys():
408 if [k[i] == seq[i] for i in range(len(k))].count(True) >= 3:
409 return START_OF_PACKETS[seq]
410 return None
411
412 def scan_eop(self):
413 for i in range(len(self.bits) - 19):
414 k = (self.get_sym(i, rec=False), self.get_sym(i+5, rec=False),
415 self.get_sym(i+10, rec=False), self.get_sym(i+15, rec=False))
416 sym = START_OF_PACKETS[k] if k in START_OF_PACKETS else None
417 if not sym:
418 sym = self.find_corrupted_sop(k)
419 # We have an interesting symbol sequence
420 if sym:
421 # annotate the preamble
422 self.putx(0, i, [1, ['Preamble', '...']])
423 # annotate each symbol
424 self.rec_sym(i, k[0])
425 self.rec_sym(i+5, k[1])
426 self.rec_sym(i+10, k[2])
427 self.rec_sym(i+15, k[3])
428 if sym == 'Hard Reset':
429 self.text += 'HRST'
430 return -1 # Hard reset
431 elif sym == 'Cable Reset':
432 self.text += 'CRST'
433 return -1 # Cable reset
434 else:
435 self.putx(i, i+20, [2, [sym, 'S']])
436 return i+20
437 self.putx(0, len(self.bits), [1, ['Junk???', 'XXX']])
438 self.text += 'Junk???'
439 self.putwarn('No start of packet found', 'XXX')
440 return -1 # No Start Of Packet
441
442 def __init__(self):
443 self.samplerate = None
444 self.idx = 0
445 self.packet_seq = 0
446 self.samplenum = 0
447 self.previous = 0
448 self.oldpins = [0]
449 self.startsample = None
450 self.bits = []
451 self.edges = []
452 self.bad = []
453 self.half_one = False
454 self.start_one = 0
455
456 def metadata(self, key, value):
457 if key == srd.SRD_CONF_SAMPLERATE:
458 self.samplerate = value
459 # 0 is 2 UI, space larger than 1.5x 0 is definitely wrong
460 self.maxbit = self.us2samples(3 * UI_US)
461 # duration threshold between half 1 and 0
462 self.threshold = self.us2samples(THRESHOLD_US)
463
464 def start(self):
465 self.out_python = self.register(srd.OUTPUT_PYTHON)
466 self.out_ann = self.register(srd.OUTPUT_ANN)
467 self.out_binary = self.register(srd.OUTPUT_BINARY)
468 self.out_bitrate = self.register(
469 srd.OUTPUT_META,
470 meta=(int, 'Bitrate', 'Bitrate during the packet')
471 )
472
473 def us2samples(self, us):
474 return int(us * self.samplerate / 1000000)
475
476 def decode_packet(self):
477 self.data = []
478 self.idx = 0
479 self.text = ''
480
481 if len(self.edges) < 50:
482 return # Not a real PD packet
483
484 self.packet_seq += 1
485 tstamp = float(self.startsample) / self.samplerate
486 self.text += '#%-4d (%8.6fms): ' % (self.packet_seq, tstamp*1000)
487
488 self.idx = self.scan_eop()
489 if self.idx < 0:
490 # Full text trace of the issue
491 self.putx(0, self.idx, [12, [self.text, '...']])
492 return # No real packet: ABORT
493
494 # Packet header
495 self.head = self.get_short()
496 self.putx(self.idx-20, self.idx, [3, ['H:%04x' % (self.head), 'HD']])
497 self.puthead()
498
499 # Decode data payload
500 for i in range(self.head_count()):
501 self.data.append(self.get_word())
502 self.putx(self.idx-40, self.idx,
503 [4, ['[%d]%08x' % (i, self.data[i]), 'D%d' % (i)]])
504 self.putpayload(self.idx-40, self.idx, i)
505
506 # CRC check
507 self.crc = self.get_word()
508 ccrc = self.compute_crc32()
509 if self.crc != ccrc:
510 self.putwarn('Bad CRC %08x != %08x' % (self.crc, ccrc), 'CRC!')
511 self.putx(self.idx-40, self.idx, [5, ['CRC:%08x' % (self.crc), 'CRC']])
512
513 # End of Packet
514 if len(self.bits) >= self.idx + 5 and self.get_sym(self.idx) == EOP:
515 self.putx(self.idx, self.idx + 5, [6, ['EOP', 'E']])
516 self.idx += 5
517 else:
518 self.putwarn('No EOP', 'EOP!')
519 # Full text trace
520 if self.options['fulltext'] == 'yes':
521 self.putx(0, self.idx, [12, [self.text, '...']])
522
523 # Meta data for bitrate
524 ss, es = self.edges[0], self.edges[-1]
525 bitrate = self.samplerate*len(self.bits) / float(es - ss)
526 self.put(es, ss, self.out_bitrate, int(bitrate))
527 # Raw binary data (BMC decoded)
528 self.put(es, ss, self.out_binary, [0, bytes(self.bits)])
529
530 def decode(self, ss, es, data):
531 if not self.samplerate:
532 raise SamplerateError('Cannot decode without samplerate.')
533 for (self.samplenum, pins) in data:
534 # find edges ...
535 if self.oldpins == pins:
536 continue
537
538 self.oldpins, (cc, ) = pins, pins
539
540 # First sample of the packet, just record the start date
541 if not self.startsample:
542 self.startsample = self.samplenum
543 self.previous = self.samplenum
544 continue
545
546 diff = self.samplenum - self.previous
547
548 # Large idle: use it as the end of packet
549 if diff > self.maxbit:
550 # the last edge of the packet
551 self.edges.append(self.previous)
552 # Export the packet
553 self.decode_packet()
554 # Reset for next packet
555 self.startsample = self.samplenum
556 self.bits = []
557 self.edges = []
558 self.bad = []
559 self.half_one = False
560 self.start_one = 0
561 else: # add the bit to the packet
562 is_zero = diff > self.threshold
563 if is_zero and not self.half_one:
564 self.bits.append(0)
565 self.edges.append(self.previous)
566 elif not is_zero and self.half_one:
567 self.bits.append(1)
568 self.edges.append(self.start_one)
569 self.half_one = False
570 elif not is_zero and not self.half_one:
571 self.half_one = True
572 self.start_one = self.previous
573 else: # Invalid BMC sequence
574 self.bad.append((self.start_one, self.previous))
575 # TODO try to recover
576 self.bits.append(0)
577 self.edges.append(self.previous)
578 self.half_one = False
579 self.previous = self.samplenum