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all decoders: introduce a reset() method
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1##
2## This file is part of the libsigrokdecode project.
3##
4## Copyright (C) 2012-2014 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
17## along with this program; if not, see <http://www.gnu.org/licenses/>.
18##
19
20import sigrokdecode as srd
21from common.sdcard import (cmd_names, acmd_names)
22
23class Decoder(srd.Decoder):
24 api_version = 3
25 id = 'sdcard_spi'
26 name = 'SD card (SPI mode)'
27 longname = 'Secure Digital card (SPI mode)'
28 desc = 'Secure Digital card (SPI mode) low-level protocol.'
29 license = 'gplv2+'
30 inputs = ['spi']
31 outputs = ['sdcard_spi']
32 annotations = \
33 tuple(('cmd%d' % i, 'CMD%d' % i) for i in range(64)) + \
34 tuple(('acmd%d' % i, 'ACMD%d' % i) for i in range(64)) + ( \
35 ('r1', 'R1 reply'),
36 ('r1b', 'R1B reply'),
37 ('r2', 'R2 reply'),
38 ('r3', 'R3 reply'),
39 ('r7', 'R7 reply'),
40 ('bits', 'Bits'),
41 ('bit-warnings', 'Bit warnings'),
42 )
43 annotation_rows = (
44 ('bits', 'Bits', (134, 135)),
45 ('cmd-reply', 'Commands/replies', tuple(range(134))),
46 )
47
48 def __init__(self):
49 self.reset()
50
51 def reset(self):
52 self.state = 'IDLE'
53 self.ss, self.es = 0, 0
54 self.ss_bit, self.es_bit = 0, 0
55 self.ss_cmd, self.es_cmd = 0, 0
56 self.cmd_token = []
57 self.cmd_token_bits = []
58 self.is_acmd = False # Indicates CMD vs. ACMD
59 self.blocklen = 0
60 self.read_buf = []
61 self.cmd_str = ''
62
63 def start(self):
64 self.out_ann = self.register(srd.OUTPUT_ANN)
65
66 def putx(self, data):
67 self.put(self.ss_cmd, self.es_cmd, self.out_ann, data)
68
69 def putc(self, cmd, desc):
70 self.putx([cmd, ['%s: %s' % (self.cmd_str, desc)]])
71
72 def putb(self, data):
73 self.put(self.ss_bit, self.es_bit, self.out_ann, data)
74
75 def cmd_name(self, cmd):
76 c = acmd_names if self.is_acmd else cmd_names
77 s = c.get(cmd, 'Unknown')
78 # SD mode names for CMD32/33: ERASE_WR_BLK_{START,END}.
79 # SPI mode names for CMD32/33: ERASE_WR_BLK_{START,END}_ADDR.
80 if cmd in (32, 33):
81 s += '_ADDR'
82 return s
83
84 def handle_command_token(self, mosi, miso):
85 # Command tokens (6 bytes) are sent (MSB-first) by the host.
86 #
87 # Format:
88 # - CMD[47:47]: Start bit (always 0)
89 # - CMD[46:46]: Transmitter bit (1 == host)
90 # - CMD[45:40]: Command index (BCD; valid: 0-63)
91 # - CMD[39:08]: Argument
92 # - CMD[07:01]: CRC7
93 # - CMD[00:00]: End bit (always 1)
94
95 if len(self.cmd_token) == 0:
96 self.ss_cmd = self.ss
97
98 self.cmd_token.append(mosi)
99 self.cmd_token_bits.append(self.mosi_bits)
100
101 # All command tokens are 6 bytes long.
102 if len(self.cmd_token) < 6:
103 return
104
105 self.es_cmd = self.es
106
107 t = self.cmd_token
108
109 # CMD or ACMD?
110 s = 'ACMD' if self.is_acmd else 'CMD'
111
112 def tb(byte, bit):
113 return self.cmd_token_bits[5 - byte][bit]
114
115 # Bits[47:47]: Start bit (always 0)
116 bit, self.ss_bit, self.es_bit = tb(5, 7)[0], tb(5, 7)[1], tb(5, 7)[2]
117 if bit == 0:
118 self.putb([134, ['Start bit: %d' % bit]])
119 else:
120 self.putb([135, ['Start bit: %s (Warning: Must be 0!)' % bit]])
121
122 # Bits[46:46]: Transmitter bit (1 == host)
123 bit, self.ss_bit, self.es_bit = tb(5, 6)[0], tb(5, 6)[1], tb(5, 6)[2]
124 if bit == 1:
125 self.putb([134, ['Transmitter bit: %d' % bit]])
126 else:
127 self.putb([135, ['Transmitter bit: %d (Warning: Must be 1!)' % bit]])
128
129 # Bits[45:40]: Command index (BCD; valid: 0-63)
130 cmd = self.cmd_index = t[0] & 0x3f
131 self.ss_bit, self.es_bit = tb(5, 5)[1], tb(5, 0)[2]
132 self.putb([134, ['Command: %s%d (%s)' % (s, cmd, self.cmd_name(cmd))]])
133
134 # Bits[39:8]: Argument
135 self.arg = (t[1] << 24) | (t[2] << 16) | (t[3] << 8) | t[4]
136 self.ss_bit, self.es_bit = tb(4, 7)[1], tb(1, 0)[2]
137 self.putb([134, ['Argument: 0x%04x' % self.arg]])
138
139 # Bits[7:1]: CRC7
140 # TODO: Check CRC7.
141 crc = t[5] >> 1
142 self.ss_bit, self.es_bit = tb(0, 7)[1], tb(0, 1)[2]
143 self.putb([134, ['CRC7: 0x%01x' % crc]])
144
145 # Bits[0:0]: End bit (always 1)
146 bit, self.ss_bit, self.es_bit = tb(0, 0)[0], tb(0, 0)[1], tb(0, 0)[2]
147 self.putb([134, ['End bit: %d' % bit]])
148 if bit == 1:
149 self.putb([134, ['End bit: %d' % bit]])
150 else:
151 self.putb([135, ['End bit: %d (Warning: Must be 1!)' % bit]])
152
153 # Handle command.
154 if cmd in (0, 1, 9, 16, 17, 41, 49, 55, 59):
155 self.state = 'HANDLE CMD%d' % cmd
156 self.cmd_str = '%s%d (%s)' % (s, cmd, self.cmd_name(cmd))
157 else:
158 self.state = 'HANDLE CMD999'
159 a = '%s%d: %02x %02x %02x %02x %02x %02x' % ((s, cmd) + tuple(t))
160 self.putx([cmd, [a]])
161
162 def handle_cmd0(self):
163 # CMD0: GO_IDLE_STATE
164 self.putc(0, 'Reset the SD card')
165 self.state = 'GET RESPONSE R1'
166
167 def handle_cmd1(self):
168 # CMD1: SEND_OP_COND
169 self.putc(1, 'Send HCS info and activate the card init process')
170 hcs = (self.arg & (1 << 30)) >> 30
171 self.ss_bit = self.cmd_token_bits[5 - 4][6][1]
172 self.es_bit = self.cmd_token_bits[5 - 4][6][2]
173 self.putb([134, ['HCS: %d' % hcs]])
174 self.state = 'GET RESPONSE R1'
175
176 def handle_cmd9(self):
177 # CMD9: SEND_CSD (128 bits / 16 bytes)
178 self.putc(9, 'Ask card to send its card specific data (CSD)')
179 if len(self.read_buf) == 0:
180 self.ss_cmd = self.ss
181 self.read_buf.append(self.miso)
182 # FIXME
183 ### if len(self.read_buf) < 16:
184 if len(self.read_buf) < 16 + 4:
185 return
186 self.es_cmd = self.es
187 self.read_buf = self.read_buf[4:] # TODO: Document or redo.
188 self.putx([9, ['CSD: %s' % self.read_buf]])
189 # TODO: Decode all bits.
190 self.read_buf = []
191 ### self.state = 'GET RESPONSE R1'
192 self.state = 'IDLE'
193
194 def handle_cmd10(self):
195 # CMD10: SEND_CID (128 bits / 16 bytes)
196 self.putc(10, 'Ask card to send its card identification (CID)')
197 self.read_buf.append(self.miso)
198 if len(self.read_buf) < 16:
199 return
200 self.putx([10, ['CID: %s' % self.read_buf]])
201 # TODO: Decode all bits.
202 self.read_buf = []
203 self.state = 'GET RESPONSE R1'
204
205 def handle_cmd16(self):
206 # CMD16: SET_BLOCKLEN
207 self.blocklen = self.arg
208 # TODO: Sanity check on block length.
209 self.putc(16, 'Set the block length to %d bytes' % self.blocklen)
210 self.state = 'GET RESPONSE R1'
211
212 def handle_cmd17(self):
213 # CMD17: READ_SINGLE_BLOCK
214 self.putc(17, 'Read a block from address 0x%04x' % self.arg)
215 if len(self.read_buf) == 0:
216 self.ss_cmd = self.ss
217 self.read_buf.append(self.miso)
218 if len(self.read_buf) < self.blocklen + 2: # FIXME
219 return
220 self.es_cmd = self.es
221 self.read_buf = self.read_buf[2:] # FIXME
222 self.putx([17, ['Block data: %s' % self.read_buf]])
223 self.read_buf = []
224 self.state = 'GET RESPONSE R1'
225
226 def handle_cmd49(self):
227 self.state = 'GET RESPONSE R1'
228
229 def handle_cmd55(self):
230 # CMD55: APP_CMD
231 self.putc(55, 'Next command is an application-specific command')
232 self.is_acmd = True
233 self.state = 'GET RESPONSE R1'
234
235 def handle_cmd59(self):
236 # CMD59: CRC_ON_OFF
237 crc_on_off = self.arg & (1 << 0)
238 s = 'on' if crc_on_off == 1 else 'off'
239 self.putc(59, 'Turn the SD card CRC option %s' % s)
240 self.state = 'GET RESPONSE R1'
241
242 def handle_acmd41(self):
243 # ACMD41: SD_SEND_OP_COND
244 self.putc(64 + 41, 'Send HCS info and activate the card init process')
245 self.state = 'GET RESPONSE R1'
246
247 def handle_cmd999(self):
248 self.state = 'GET RESPONSE R1'
249
250 def handle_cid_register(self):
251 # Card Identification (CID) register, 128bits
252
253 cid = self.cid
254
255 # Manufacturer ID: CID[127:120] (8 bits)
256 mid = cid[15]
257
258 # OEM/Application ID: CID[119:104] (16 bits)
259 oid = (cid[14] << 8) | cid[13]
260
261 # Product name: CID[103:64] (40 bits)
262 pnm = 0
263 for i in range(12, 8 - 1, -1):
264 pnm <<= 8
265 pnm |= cid[i]
266
267 # Product revision: CID[63:56] (8 bits)
268 prv = cid[7]
269
270 # Product serial number: CID[55:24] (32 bits)
271 psn = 0
272 for i in range(6, 3 - 1, -1):
273 psn <<= 8
274 psn |= cid[i]
275
276 # RESERVED: CID[23:20] (4 bits)
277
278 # Manufacturing date: CID[19:8] (12 bits)
279 # TODO
280
281 # CRC7 checksum: CID[7:1] (7 bits)
282 # TODO
283
284 # Not used, always 1: CID[0:0] (1 bit)
285 # TODO
286
287 def handle_response_r1(self, res):
288 # The R1 response token format (1 byte).
289 # Sent by the card after every command except for SEND_STATUS.
290
291 self.ss_cmd, self.es_cmd = self.miso_bits[7][1], self.miso_bits[0][2]
292 self.putx([65, ['R1: 0x%02x' % res]])
293
294 def putbit(bit, data):
295 b = self.miso_bits[bit]
296 self.ss_bit, self.es_bit = b[1], b[2]
297 self.putb([134, data])
298
299 # Bit 0: 'In idle state' bit
300 s = '' if (res & (1 << 0)) else 'not '
301 putbit(0, ['Card is %sin idle state' % s])
302
303 # Bit 1: 'Erase reset' bit
304 s = '' if (res & (1 << 1)) else 'not '
305 putbit(1, ['Erase sequence %scleared' % s])
306
307 # Bit 2: 'Illegal command' bit
308 s = 'I' if (res & (1 << 2)) else 'No i'
309 putbit(2, ['%sllegal command detected' % s])
310
311 # Bit 3: 'Communication CRC error' bit
312 s = 'failed' if (res & (1 << 3)) else 'was successful'
313 putbit(3, ['CRC check of last command %s' % s])
314
315 # Bit 4: 'Erase sequence error' bit
316 s = 'E' if (res & (1 << 4)) else 'No e'
317 putbit(4, ['%srror in the sequence of erase commands' % s])
318
319 # Bit 5: 'Address error' bit
320 s = 'M' if (res & (1 << 4)) else 'No m'
321 putbit(5, ['%sisaligned address used in command' % s])
322
323 # Bit 6: 'Parameter error' bit
324 s = '' if (res & (1 << 4)) else 'not '
325 putbit(6, ['Command argument %soutside allowed range' % s])
326
327 # Bit 7: Always set to 0
328 putbit(7, ['Bit 7 (always 0)'])
329
330 self.state = 'IDLE'
331
332 def handle_response_r1b(self, res):
333 # TODO
334 pass
335
336 def handle_response_r2(self, res):
337 # TODO
338 pass
339
340 def handle_response_r3(self, res):
341 # TODO
342 pass
343
344 # Note: Response token formats R4 and R5 are reserved for SDIO.
345
346 # TODO: R6?
347
348 def handle_response_r7(self, res):
349 # TODO
350 pass
351
352 def decode(self, ss, es, data):
353 ptype, mosi, miso = data
354
355 # For now, only use DATA and BITS packets.
356 if ptype not in ('DATA', 'BITS'):
357 return
358
359 # Store the individual bit values and ss/es numbers. The next packet
360 # is guaranteed to be a 'DATA' packet belonging to this 'BITS' one.
361 if ptype == 'BITS':
362 self.miso_bits, self.mosi_bits = miso, mosi
363 return
364
365 self.ss, self.es = ss, es
366
367 # State machine.
368 if self.state == 'IDLE':
369 # Ignore stray 0xff bytes, some devices seem to send those!?
370 if mosi == 0xff: # TODO?
371 return
372 self.state = 'GET COMMAND TOKEN'
373 self.handle_command_token(mosi, miso)
374 elif self.state == 'GET COMMAND TOKEN':
375 self.handle_command_token(mosi, miso)
376 elif self.state.startswith('HANDLE CMD'):
377 self.miso, self.mosi = miso, mosi
378 # Call the respective handler method for the command.
379 a, cmdstr = 'a' if self.is_acmd else '', self.state[10:].lower()
380 handle_cmd = getattr(self, 'handle_%scmd%s' % (a, cmdstr))
381 handle_cmd()
382 self.cmd_token = []
383 self.cmd_token_bits = []
384 # Leave ACMD mode again after the first command after CMD55.
385 if self.is_acmd and cmdstr != '55':
386 self.is_acmd = False
387 elif self.state.startswith('GET RESPONSE'):
388 # Ignore stray 0xff bytes, some devices seem to send those!?
389 if miso == 0xff: # TODO?
390 return
391
392 # Call the respective handler method for the response.
393 s = 'handle_response_%s' % self.state[13:].lower()
394 handle_response = getattr(self, s)
395 handle_response(miso)
396
397 self.state = 'IDLE'