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08c41387 1##
ada4c3a3 2## This file is part of the libsigrokdecode project.
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3##
4## Copyright (C) 2015 Uwe Hermann <uwe@hermann-uwe.de>
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/>.
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18##
19
20import sigrokdecode as srd
135b790c 21from common.sdcard import (cmd_names, acmd_names, accepted_voltages, card_status, sd_status)
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22
23class Decoder(srd.Decoder):
11535843 24 api_version = 3
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25 id = 'sdcard_sd'
26 name = 'SD card (SD mode)'
27 longname = 'Secure Digital card (SD mode)'
28 desc = 'Secure Digital card (SD mode) low-level protocol.'
29 license = 'gplv2+'
30 inputs = ['logic']
31 outputs = ['sdcard_sd']
d6d8a8a4 32 tags = ['Memory']
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33 channels = (
34 {'id': 'cmd', 'name': 'CMD', 'desc': 'Command'},
35 {'id': 'clk', 'name': 'CLK', 'desc': 'Clock'},
36 )
37 optional_channels = (
38 {'id': 'dat0', 'name': 'DAT0', 'desc': 'Data pin 0'},
39 {'id': 'dat1', 'name': 'DAT1', 'desc': 'Data pin 1'},
40 {'id': 'dat2', 'name': 'DAT2', 'desc': 'Data pin 2'},
41 {'id': 'dat3', 'name': 'DAT3', 'desc': 'Data pin 3'},
42 )
43 annotations = \
44 tuple(('cmd%d' % i, 'CMD%d' % i) for i in range(64)) + \
45 tuple(('acmd%d' % i, 'ACMD%d' % i) for i in range(64)) + ( \
46 ('bits', 'Bits'),
47 ('field-start', 'Start bit'),
48 ('field-transmission', 'Transmission bit'),
49 ('field-cmd', 'Command'),
50 ('field-arg', 'Argument'),
51 ('field-crc', 'CRC'),
52 ('field-end', 'End bit'),
53 ('decoded-bits', 'Decoded bits'),
54 ('decoded-fields', 'Decoded fields'),
55 )
56 annotation_rows = (
57 ('raw-bits', 'Raw bits', (128,)),
58 ('decoded-bits', 'Decoded bits', (135,)),
59 ('decoded-fields', 'Decoded fields', (136,)),
60 ('fields', 'Fields', tuple(range(129, 135))),
61 ('cmd', 'Commands', tuple(range(128))),
62 )
63
92b7b49f 64 def __init__(self):
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65 self.reset()
66
67 def reset(self):
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68 self.state = 'GET COMMAND TOKEN'
69 self.token = []
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70 self.is_acmd = False # Indicates CMD vs. ACMD
71 self.cmd = None
f8eb6c3f 72 self.last_cmd = None
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73 self.arg = None
74
75 def start(self):
76 self.out_ann = self.register(srd.OUTPUT_ANN)
77
78 def putbit(self, b, data):
79 self.put(self.token[b][0], self.token[b][1], self.out_ann, [135, data])
80
81 def putt(self, data):
82 self.put(self.token[0][0], self.token[47][1], self.out_ann, data)
83
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84 def putf(self, s, e, data):
85 self.put(self.token[s][0], self.token[e][1], self.out_ann, data)
86
87 def puta(self, s, e, data):
88 self.put(self.token[47 - 8 - e][0], self.token[47 - 8 - s][1],
89 self.out_ann, data)
90
91 def putc(self, cmd, desc):
f8eb6c3f 92 self.last_cmd = cmd
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93 self.putt([cmd, ['%s: %s' % (self.cmd_str, desc), self.cmd_str,
94 self.cmd_str.split(' ')[0]]])
95
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96 def putr(self, desc):
97 self.putt([self.last_cmd, ['Reply: %s' % desc]])
08c41387 98
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99 def cmd_name(self, cmd):
100 c = acmd_names if self.is_acmd else cmd_names
101 return c.get(cmd, 'Unknown')
102
103 def get_token_bits(self, cmd, n):
104 # Get a bit, return True if we already got 'n' bits, False otherwise.
105 self.token.append([self.samplenum, self.samplenum, cmd])
106 if len(self.token) > 0:
107 self.token[len(self.token) - 2][1] = self.samplenum
108 if len(self.token) < n:
109 return False
110 self.token[n - 1][1] += self.token[n - 1][0] - self.token[n - 2][0]
111 return True
112
113 def handle_common_token_fields(self):
114 s = self.token
115
116 # Annotations for each individual bit.
117 for bit in range(len(self.token)):
118 self.putf(bit, bit, [128, ['%d' % s[bit][2]]])
119
120 # CMD[47:47]: Start bit (always 0)
121 self.putf(0, 0, [129, ['Start bit', 'Start', 'S']])
122
123 # CMD[46:46]: Transmission bit (1 == host)
124 t = 'host' if s[1][2] == 1 else 'card'
125 self.putf(1, 1, [130, ['Transmission: ' + t, 'T: ' + t, 'T']])
126
127 # CMD[45:40]: Command index (BCD; valid: 0-63)
128 self.cmd = int('0b' + ''.join([str(s[i][2]) for i in range(2, 8)]), 2)
129 c = '%s (%d)' % (self.cmd_name(self.cmd), self.cmd)
130 self.putf(2, 7, [131, ['Command: ' + c, 'Cmd: ' + c,
131 'CMD%d' % self.cmd, 'Cmd', 'C']])
132
133 # CMD[39:08]: Argument
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134 self.arg = int('0b' + ''.join([str(s[i][2]) for i in range(8, 40)]), 2)
135 self.putf(8, 39, [132, ['Argument: 0x%08x' % self.arg, 'Arg', 'A']])
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136
137 # CMD[07:01]: CRC7
138 self.crc = int('0b' + ''.join([str(s[i][2]) for i in range(40, 47)]), 2)
139 self.putf(40, 46, [133, ['CRC: 0x%x' % self.crc, 'CRC', 'C']])
140
141 # CMD[00:00]: End bit (always 1)
142 self.putf(47, 47, [134, ['End bit', 'End', 'E']])
143
144 def get_command_token(self, cmd):
145 # Command tokens (48 bits) are sent serially (MSB-first) by the host
146 # (over the CMD line), either to one SD card or to multiple ones.
147 #
148 # Format:
149 # - Bits[47:47]: Start bit (always 0)
150 # - Bits[46:46]: Transmission bit (1 == host)
151 # - Bits[45:40]: Command index (BCD; valid: 0-63)
152 # - Bits[39:08]: Argument
153 # - Bits[07:01]: CRC7
154 # - Bits[00:00]: End bit (always 1)
155
156 if not self.get_token_bits(cmd, 48):
157 return
158
159 self.handle_common_token_fields()
160
161 # Handle command.
162 s = 'ACMD' if self.is_acmd else 'CMD'
163 self.cmd_str = '%s%d (%s)' % (s, self.cmd, self.cmd_name(self.cmd))
ee390f67 164 if self.cmd in (0, 2, 3, 6, 7, 8, 9, 10, 13, 41, 51, 55):
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165 self.state = 'HANDLE CMD%d' % self.cmd
166 else:
167 self.state = 'HANDLE CMD999'
168 self.putc(self.cmd, '%s%d' % (s, self.cmd))
169
170 def handle_cmd0(self):
171 # CMD0 (GO_IDLE_STATE) -> no response
172 self.puta(0, 31, [136, ['Stuff bits', 'Stuff', 'SB', 'S']])
173 self.putc(0, 'Reset all SD cards')
174 self.token, self.state = [], 'GET COMMAND TOKEN'
175
176 def handle_cmd2(self):
177 # CMD2 (ALL_SEND_CID) -> R2
178 self.puta(0, 31, [136, ['Stuff bits', 'Stuff', 'SB', 'S']])
179 self.putc(2, 'Ask card for CID number')
180 self.token, self.state = [], 'GET RESPONSE R2'
181
182 def handle_cmd3(self):
183 # CMD3 (SEND_RELATIVE_ADDR) -> R6
184 self.puta(0, 31, [136, ['Stuff bits', 'Stuff', 'SB', 'S']])
185 self.putc(3, 'Ask card for new relative card address (RCA)')
186 self.token, self.state = [], 'GET RESPONSE R6'
187
188 def handle_cmd6(self):
189 # CMD6 (SWITCH_FUNC) -> R1
190 self.putc(6, 'Switch/check card function')
191 self.token, self.state = [], 'GET RESPONSE R1'
192
193 def handle_cmd7(self):
194 # CMD7 (SELECT/DESELECT_CARD) -> R1b
195 self.putc(7, 'Select / deselect card')
196 self.token, self.state = [], 'GET RESPONSE R6'
197
198 def handle_cmd8(self):
199 # CMD8 (SEND_IF_COND) -> R7
200 self.puta(12, 31, [136, ['Reserved', 'Res', 'R']])
201 self.puta(8, 11, [136, ['Supply voltage', 'Voltage', 'VHS', 'V']])
202 self.puta(0, 7, [136, ['Check pattern', 'Check pat', 'Check', 'C']])
1cf5aeaf 203 self.putc(8, 'Send interface condition to card')
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204 self.token, self.state = [], 'GET RESPONSE R7'
205 # TODO: Handle case when card doesn't reply with R7 (no reply at all).
206
207 def handle_cmd9(self):
208 # CMD9 (SEND_CSD) -> R2
209 self.puta(16, 31, [136, ['RCA', 'R']])
210 self.puta(0, 15, [136, ['Stuff bits', 'Stuff', 'SB', 'S']])
211 self.putc(9, 'Send card-specific data (CSD)')
212 self.token, self.state = [], 'GET RESPONSE R2'
213
214 def handle_cmd10(self):
215 # CMD10 (SEND_CID) -> R2
216 self.puta(16, 31, [136, ['RCA', 'R']])
217 self.puta(0, 15, [136, ['Stuff bits', 'Stuff', 'SB', 'S']])
218 self.putc(9, 'Send card identification data (CID)')
219 self.token, self.state = [], 'GET RESPONSE R2'
220
221 def handle_cmd13(self):
222 # CMD13 (SEND_STATUS) -> R1
223 self.puta(16, 31, [136, ['RCA', 'R']])
224 self.puta(0, 15, [136, ['Stuff bits', 'Stuff', 'SB', 'S']])
225 self.putc(13, 'Send card status register')
226 self.token, self.state = [], 'GET RESPONSE R1'
227
228 def handle_cmd16(self):
229 # CMD16 (SET_BLOCKLEN) -> R1
08c41387 230 self.puta(0, 31, [136, ['Block length', 'Blocklen', 'BL', 'B']])
d507f5e4 231 self.putc(16, 'Set the block length to %d bytes' % self.arg)
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232 self.token, self.state = [], 'GET RESPONSE R1'
233
234 def handle_cmd55(self):
235 # CMD55 (APP_CMD) -> R1
236 self.puta(16, 31, [136, ['RCA', 'R']])
237 self.puta(0, 15, [136, ['Stuff bits', 'Stuff', 'SB', 'S']])
238 self.putc(55, 'Next command is an application-specific command')
239 self.is_acmd = True
240 self.token, self.state = [], 'GET RESPONSE R1'
241
242 def handle_acmd6(self):
243 # ACMD6 (SET_BUS_WIDTH) -> R1
244 self.putc(64 + 6, 'Read SD config register (SCR)')
245 self.token, self.state = [], 'GET RESPONSE R1'
246
247 def handle_acmd13(self):
248 # ACMD13 (SD_STATUS) -> R1
249 self.puta(0, 31, [136, ['Stuff bits', 'Stuff', 'SB', 'S']])
250 self.putc(64 + 13, 'Set SD status')
251 self.token, self.state = [], 'GET RESPONSE R1'
252
253 def handle_acmd41(self):
254 # ACMD41 (SD_SEND_OP_COND) -> R3
255 self.puta(0, 23, [136, ['VDD voltage window', 'VDD volt', 'VDD', 'V']])
256 self.puta(24, 24, [136, ['S18R']])
257 self.puta(25, 27, [136, ['Reserved', 'Res', 'R']])
258 self.puta(28, 28, [136, ['XPC']])
259 self.puta(29, 29, [136, ['Reserved for eSD', 'Reserved', 'Res', 'R']])
260 self.puta(30, 30, [136, ['Host capacity support info', 'Host capacity',
261 'HCS', 'H']])
262 self.puta(31, 31, [136, ['Reserved', 'Res', 'R']])
263 self.putc(64 + 41, 'Send HCS info and activate the card init process')
264 self.token, self.state = [], 'GET RESPONSE R3'
265
266 def handle_acmd51(self):
267 # ACMD51 (SEND_SCR) -> R1
268 self.putc(64 + 51, 'Read SD config register (SCR)')
269 self.token, self.state = [], 'GET RESPONSE R1'
270
271 def handle_cmd999(self):
272 self.token, self.state = [], 'GET RESPONSE R1'
273
274 def handle_acmd999(self):
275 self.token, self.state = [], 'GET RESPONSE R1'
276
277 # Response tokens can have one of four formats (depends on content).
278 # They can have a total length of 48 or 136 bits.
279 # They're sent serially (MSB-first) by the card that the host
280 # addressed previously, or (synchronously) by all connected cards.
281
282 def handle_response_r1(self, cmd):
283 # R1: Normal response command
284 # - Bits[47:47]: Start bit (always 0)
285 # - Bits[46:46]: Transmission bit (0 == card)
286 # - Bits[45:40]: Command index (BCD; valid: 0-63)
287 # - Bits[39:08]: Card status
288 # - Bits[07:01]: CRC7
289 # - Bits[00:00]: End bit (always 1)
290 if not self.get_token_bits(cmd, 48):
291 return
292 self.handle_common_token_fields()
f8eb6c3f 293 self.putr('R1')
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294 self.puta(0, 31, [136, ['Card status', 'Status', 'S']])
295 for i in range(32):
296 self.putbit(8 + i, [card_status[31 - i]])
297 self.token, self.state = [], 'GET COMMAND TOKEN'
298
299 def handle_response_r1b(self, cmd):
300 # R1b: Same as R1 with an optional busy signal (on the data line)
301 if not self.get_token_bits(cmd, 48):
302 return
303 self.handle_common_token_fields()
304 self.puta(0, 31, [136, ['Card status', 'Status', 'S']])
f8eb6c3f 305 self.putr('R1b')
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306 self.token, self.state = [], 'GET COMMAND TOKEN'
307
308 def handle_response_r2(self, cmd):
309 # R2: CID/CSD register
310 # - Bits[135:135]: Start bit (always 0)
311 # - Bits[134:134]: Transmission bit (0 == card)
312 # - Bits[133:128]: Reserved (always 0b111111)
313 # - Bits[127:001]: CID or CSD register including internal CRC7
314 # - Bits[000:000]: End bit (always 1)
315 if not self.get_token_bits(cmd, 136):
316 return
317 # Annotations for each individual bit.
318 for bit in range(len(self.token)):
319 self.putf(bit, bit, [128, ['%d' % self.token[bit][2]]])
320 self.putf(0, 0, [129, ['Start bit', 'Start', 'S']])
321 t = 'host' if self.token[1][2] == 1 else 'card'
322 self.putf(1, 1, [130, ['Transmission: ' + t, 'T: ' + t, 'T']])
323 self.putf(2, 7, [131, ['Reserved', 'Res', 'R']])
324 self.putf(8, 134, [132, ['Argument', 'Arg', 'A']])
325 self.putf(135, 135, [134, ['End bit', 'End', 'E']])
326 self.putf(8, 134, [136, ['CID/CSD register', 'CID/CSD', 'C']])
327 self.putf(0, 135, [55, ['R2']])
328 self.token, self.state = [], 'GET COMMAND TOKEN'
329
330 def handle_response_r3(self, cmd):
331 # R3: OCR register
332 # - Bits[47:47]: Start bit (always 0)
333 # - Bits[46:46]: Transmission bit (0 == card)
334 # - Bits[45:40]: Reserved (always 0b111111)
335 # - Bits[39:08]: OCR register
336 # - Bits[07:01]: Reserved (always 0b111111)
337 # - Bits[00:00]: End bit (always 1)
338 if not self.get_token_bits(cmd, 48):
339 return
f8eb6c3f 340 self.putr('R3')
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341 # Annotations for each individual bit.
342 for bit in range(len(self.token)):
343 self.putf(bit, bit, [128, ['%d' % self.token[bit][2]]])
344 self.putf(0, 0, [129, ['Start bit', 'Start', 'S']])
345 t = 'host' if self.token[1][2] == 1 else 'card'
346 self.putf(1, 1, [130, ['Transmission: ' + t, 'T: ' + t, 'T']])
347 self.putf(2, 7, [131, ['Reserved', 'Res', 'R']])
348 self.putf(8, 39, [132, ['Argument', 'Arg', 'A']])
349 self.putf(40, 46, [133, ['Reserved', 'Res', 'R']])
350 self.putf(47, 47, [134, ['End bit', 'End', 'E']])
351 self.puta(0, 31, [136, ['OCR register', 'OCR reg', 'OCR', 'O']])
352 self.token, self.state = [], 'GET COMMAND TOKEN'
353
354 def handle_response_r6(self, cmd):
355 # R6: Published RCA response
356 # - Bits[47:47]: Start bit (always 0)
357 # - Bits[46:46]: Transmission bit (0 == card)
358 # - Bits[45:40]: Command index (always 0b000011)
359 # - Bits[39:24]: Argument[31:16]: New published RCA of the card
360 # - Bits[23:08]: Argument[15:0]: Card status bits
361 # - Bits[07:01]: CRC7
362 # - Bits[00:00]: End bit (always 1)
363 if not self.get_token_bits(cmd, 48):
364 return
365 self.handle_common_token_fields()
366 self.puta(0, 15, [136, ['Card status bits', 'Status', 'S']])
367 self.puta(16, 31, [136, ['Relative card address', 'RCA', 'R']])
f8eb6c3f 368 self.putr('R6')
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369 self.token, self.state = [], 'GET COMMAND TOKEN'
370
371 def handle_response_r7(self, cmd):
372 # R7: Card interface condition
373 # - Bits[47:47]: Start bit (always 0)
374 # - Bits[46:46]: Transmission bit (0 == card)
375 # - Bits[45:40]: Command index (always 0b001000)
376 # - Bits[39:20]: Reserved bits (all-zero)
377 # - Bits[19:16]: Voltage accepted
378 # - Bits[15:08]: Echo-back of check pattern
379 # - Bits[07:01]: CRC7
380 # - Bits[00:00]: End bit (always 1)
381 if not self.get_token_bits(cmd, 48):
382 return
383 self.handle_common_token_fields()
384
f8eb6c3f 385 self.putr('R7')
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386
387 # Arg[31:12]: Reserved bits (all-zero)
388 self.puta(12, 31, [136, ['Reserved', 'Res', 'R']])
389
390 # Arg[11:08]: Voltage accepted
391 v = ''.join(str(i[2]) for i in self.token[28:32])
392 av = accepted_voltages.get(int('0b' + v, 2), 'Unknown')
393 self.puta(8, 11, [136, ['Voltage accepted: ' + av, 'Voltage', 'Volt', 'V']])
394
395 # Arg[07:00]: Echo-back of check pattern
396 self.puta(0, 7, [136, ['Echo-back of check pattern', 'Echo', 'E']])
397
398 self.token, self.state = [], 'GET COMMAND TOKEN'
399
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400 def decode(self):
401 while True:
08c41387 402 # Wait for a rising CLK edge.
11535843 403 (cmd, clk, dat0, dat1, dat2, dat3) = self.wait({1: 'r'})
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404
405 # State machine.
406 if self.state == 'GET COMMAND TOKEN':
407 if len(self.token) == 0:
408 # Wait for start bit (CMD = 0).
409 if cmd != 0:
410 continue
411 self.get_command_token(cmd)
412 elif self.state.startswith('HANDLE CMD'):
413 # Call the respective handler method for the command.
414 a, cmdstr = 'a' if self.is_acmd else '', self.state[10:].lower()
415 handle_cmd = getattr(self, 'handle_%scmd%s' % (a, cmdstr))
416 handle_cmd()
417 # Leave ACMD mode again after the first command after CMD55.
418 if self.is_acmd and cmdstr not in ('55', '63'):
419 self.is_acmd = False
420 elif self.state.startswith('GET RESPONSE'):
421 if len(self.token) == 0:
422 # Wait for start bit (CMD = 0).
423 if cmd != 0:
424 continue
425 # Call the respective handler method for the response.
426 s = 'handle_response_%s' % self.state[13:].lower()
427 handle_response = getattr(self, s)
428 handle_response(cmd)