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1##
2## This file is part of the sigrok project.
3##
4## Copyright (C) 2011 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, write to the Free Software
18## Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
19##
20
21#
22# Macronix MX25Lxx05D SPI (NOR) flash chip decoder.
23# Works for MX25L1605D/MX25L3205D/MX25L6405D.
24#
25
26#
27# TODO: Description
28#
29# Details:
30# http://www.macronix.com/QuickPlace/hq/PageLibrary4825740B00298A3B.nsf/h_Index/3F21BAC2E121E17848257639003A3146/$File/MX25L1605D-3205D-6405D-1.5.pdf
31#
32
33import sigrok
34
35# States
36IDLE = -1
37
38# Chip commands (also used as additional decoder states).
39CMD_WREN = 0x06
40CMD_WRDI = 0x04
41CMD_RDID = 0x9f
42CMD_RDSR = 0x05
43CMD_WRSR = 0x01
44CMD_READ = 0x03
45CMD_FAST_READ = 0x0b
46CMD_2READ = 0xbb
47CMD_SE = 0x20
48CMD_BE = 0xd8
49CMD_CE = 0x60
50CMD_CE2 = 0xc7
51CMD_PP = 0x02
52CMD_CP = 0xad
53CMD_DP = 0xb9
54# CMD_RDP = 0xab
55# CMD_RES = 0xab
56CMD_RDP_RES = 0xab # Note: RDP/RES have the same ID.
57CMD_REMS = 0x90
58CMD_REMS2 = 0xef
59CMD_ENSO = 0xb1
60CMD_EXSO = 0xc1
61CMD_RDSCUR = 0x2b
62CMD_WRSCUR = 0x2f
63CMD_ESRY = 0x70
64CMD_DSRY = 0x80
65
66# TODO: (Short) command names as strings in a dict, too?
67
68# Dict which maps command IDs to their description.
69cmds = {
70 CMD_WREN: 'Write enable',
71 CMD_WRDI: 'Write disable',
72 CMD_RDID: 'Read identification',
73 CMD_RDSR: 'Read status register',
74 CMD_WRSR: 'Write status register',
75 CMD_READ: 'Read data',
76 CMD_FAST_READ: 'Fast read data',
77 CMD_2READ: '2x I/O read',
78 CMD_SE: 'Sector erase',
79 CMD_BE: 'Block erase',
80 CMD_CE: 'Chip erase',
81 CMD_CE2: 'Chip erase', # Alternative command ID
82 CMD_PP: 'Page program',
83 CMD_CP: 'Continuously program mode',
84 CMD_DP: 'Deep power down',
85 # CMD_RDP: 'Release from deep powerdown',
86 # CMD_RES: 'Read electronic ID',
87 CMD_RDP_RES: 'Release from deep powerdown / Read electronic ID',
88 CMD_REMS: 'Read electronic manufacturer & device ID',
89 CMD_REMS2: 'Read ID for 2x I/O mode',
90 CMD_ENSO: 'Enter secured OTP',
91 CMD_EXSO: 'Exit secured OTP',
92 CMD_RDSCUR: 'Read security register',
93 CMD_WRSCUR: 'Write security register',
94 CMD_ESRY: 'Enable SO to output RY/BY#',
95 CMD_DSRY: 'Disable SO to output RY/BY#',
96}
97
98device_name = {
99 0x14: 'MX25L1605D',
100 0x15: 'MX25L3205D',
101 0x16: 'MX25L6405D',
102}
103
104# FIXME: This is just some example input for testing purposes...
105
106mosi_packets = [
107 # REMS
108 {'type': 'D', 'range': (100, 110), 'data': 0x90, 'ann': ''},
109 {'type': 'D', 'range': (120, 130), 'data': 0xff, 'ann': ''},
110 {'type': 'D', 'range': (170, 180), 'data': 0xff, 'ann': ''},
111 {'type': 'D', 'range': (190, 200), 'data': 0x00, 'ann': ''},
112 {'type': 'D', 'range': (400, 410), 'data': 0xff, 'ann': ''},
113 {'type': 'D', 'range': (411, 421), 'data': 0xff, 'ann': ''},
114 # RDID
115 {'type': 'D', 'range': (10, 11), 'data': 0x9f, 'ann': ''},
116 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
117 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
118 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
119 # SE
120 {'type': 'D', 'range': (10, 11), 'data': 0x20, 'ann': ''},
121 {'type': 'D', 'range': (10, 11), 'data': 0x12, 'ann': ''},
122 {'type': 'D', 'range': (10, 11), 'data': 0x34, 'ann': ''},
123 {'type': 'D', 'range': (10, 11), 'data': 0x56, 'ann': ''},
124 # SE
125 {'type': 'D', 'range': (10, 11), 'data': 0x20, 'ann': ''},
126 {'type': 'D', 'range': (10, 11), 'data': 0x44, 'ann': ''},
127 {'type': 'D', 'range': (10, 11), 'data': 0x55, 'ann': ''},
128 {'type': 'D', 'range': (10, 11), 'data': 0x66, 'ann': ''},
129 # WREN
130 {'type': 'D', 'range': (10, 11), 'data': 0x06, 'ann': ''},
131]
132
133miso_packets = [
134 # REMS
135 {'type': 'D', 'range': (100, 110), 'data': 0xff, 'ann': ''},
136 {'type': 'D', 'range': (120, 130), 'data': 0xff, 'ann': ''},
137 {'type': 'D', 'range': (170, 180), 'data': 0xff, 'ann': ''},
138 {'type': 'D', 'range': (190, 200), 'data': 0xff, 'ann': ''},
139 {'type': 'D', 'range': (400, 410), 'data': 0xc2, 'ann': ''},
140 {'type': 'D', 'range': (411, 421), 'data': 0x14, 'ann': ''},
141 # RDID
142 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
143 {'type': 'D', 'range': (10, 11), 'data': 0xc2, 'ann': ''},
144 {'type': 'D', 'range': (10, 11), 'data': 0x20, 'ann': ''},
145 {'type': 'D', 'range': (10, 11), 'data': 0x15, 'ann': ''},
146 # SE
147 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
148 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
149 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
150 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
151 # SE
152 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
153 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
154 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
155 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
156 # WREN
157 {'type': 'D', 'range': (10, 11), 'data': 0xff, 'ann': ''},
158]
159
160class Sample():
161 def __init__(self, data):
162 self.data = data
163 def probe(self, probe):
f90fe506 164 s = ord(self.data[int(probe / 8)]) & (1 << (probe % 8))
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165 return True if s else False
166
167def sampleiter(data, unitsize):
168 for i in range(0, len(data), unitsize):
169 yield(Sample(data[i:i+unitsize]))
170
171class Decoder(sigrok.Decoder):
172 id = 'mx25lxx05d'
173 name = 'Macronix MX25Lxx05D'
174 longname = 'Macronix MX25Lxx05D SPI flash chip decoder'
175 desc = 'Macronix MX25Lxx05D SPI flash chip decoder'
176 longdesc = 'TODO'
177 author = 'Uwe Hermann'
178 email = 'uwe@hermann-uwe.de'
179 license = 'gplv2+'
180 inputs = ['spi', 'spi', 'logic']
181 outputs = ['mx25lxx05d']
182 probes = {} # TODO: HOLD#, WP#/ACC
183 options = {} # TODO
184
185 def __init__(self, **kwargs):
186 self.probes = Decoder.probes.copy()
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187 self.output_protocol = None
188 self.output_annotation = None
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189 self.state = IDLE
190 self.cmdstate = 1 # TODO
191 self.out = []
192
193 def start(self, metadata):
194 self.unitsize = metadata['unitsize']
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195 # self.output_protocol = self.output_new(2)
196 self.output_annotation = self.output_new(1)
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197
198 def report(self):
199 pass
200
201 def handle_wren(self, miso_packet, mosi_packet):
202 self.out += [{'type': self.cmd, 'range': mosi_packet['range'],
203 'data': None, 'ann': cmds[self.state]}]
204 self.state = IDLE
205
206 # TODO: Check/display device ID / name
207 def handle_rdid(self, miso_packet, mosi_packet):
208 ## self.state = IDLE
209 ## return # FIXME
210
211 if self.cmdstate == 1:
212 # Byte 1: Master sends command ID.
213 self.start_sample = mosi_packet['range'][0]
214 o = [] # TODO
215 elif self.cmdstate == 2:
216 # Byte 2: Slave sends the JEDEC manufacturer ID.
217 o = [{'type': self.cmd, 'range': miso_packet['range'],
218 'data': miso_packet['data'], 'ann': 'Manufacturer ID'}]
219 elif self.cmdstate == 3:
220 # Byte 3: Slave sends the memory type (0x20 for this chip).
221 o = [{'type': self.cmd, 'range': miso_packet['range'],
222 'data': miso_packet['data'], 'ann': 'Memory type'}]
223 elif self.cmdstate == 4:
224 # Byte 4: Slave sends the device ID.
225 self.device_id = miso_packet['data']
226 o = [{'type': self.cmd, 'range': miso_packet['range'],
227 'data': miso_packet['data'], 'ann': 'Device ID'}]
228
229 if self.cmdstate == 4:
230 # TODO: Check self.device_id is valid & exists in device_names.
231 # TODO: Same device ID? Check!
232 dev = 'Device: Macronix %s' % device_name[self.device_id]
233 o += [{'type': 'RDID', # TODO: self.cmd?
234 'range': (self.start_sample, miso_packet['range'][1]),
235 'data': None, # TODO?
236 'ann': dev}]
237 self.state = IDLE
238 else:
239 self.cmdstate += 1
240
241 self.out += o
242
243 # TODO: Warn/abort if we don't see the necessary amount of bytes.
244 # TODO: Warn if WREN was not seen before.
245 def handle_se(self, miso_packet, mosi_packet):
246 if self.cmdstate == 1:
247 # Byte 1: Master sends command ID.
248 self.addr = 0
249 self.start_sample = mosi_packet['range'][0]
250 o = [{'type': self.cmd, 'range': mosi_packet['range'],
251 'data': self.cmd, 'ann': 'Command ID'}]
252 elif self.cmdstate in (2, 3, 4):
253 # Bytes 2/3/4: Master sends address of the sector to erase.
254 # Note: Assumes SPI data is 8 bits wide (it is for MX25Lxx05D).
255 # TODO: LSB-first of MSB-first?
256 self.addr <<= 8
257 self.addr |= mosi_packet['data']
258 o = [] # TODO: Output 'Address byte 1' and such fields?
259
260 if self.cmdstate == 4:
261 o += [{'type': self.cmd,
262 'range': (self.start_sample, mosi_packet['range'][1]),
263 'data': '0x%x' % self.addr, 'ann': cmds[self.state]}]
264 # TODO: Max. size depends on chip, check that too if possible.
265 if self.addr % 4096 != 0:
266 # Sector addresses must be 4K-aligned (same for all 3 chips).
267 o += [{'type': self.cmd, # TODO: Type == 'Warning' or such?
268 'range': (self.start_sample, mosi_packet['range'][1]),
269 'data': None, 'ann': 'Warning: Invalid sector address!'}]
270 self.state = IDLE
271 else:
272 self.cmdstate += 1
273
274 self.out += o
275
276 def handle_rems(self, miso_packet, mosi_packet):
277 if self.cmdstate == 1:
278 # Byte 1: Master sends command ID.
279 self.start_sample = mosi_packet['range'][0]
280 o = [{'type': self.cmd, 'range': mosi_packet['range'],
281 'data': self.cmd, 'ann': 'Command ID'}]
282 elif self.cmdstate in (2, 3):
283 # Bytes 2/3: Master sends two dummy bytes.
284 # TODO: Check dummy bytes? Check reply from device?
285 o = [{'type': self.cmd, 'range': mosi_packet['range'],
286 'data': mosi_packet['data'], 'ann': 'Dummy byte'}]
287 elif self.cmdstate == 4:
288 # Byte 4: Master sends 0x00 or 0x01.
289 # 0x00: Master wants manufacturer ID as first reply byte.
290 # 0x01: Master wants device ID as first reply byte.
291 b = mosi_packet['data']
292 self.manufacturer_id_first = True if (b == 0x00) else False
293 d = 'manufacturer' if (b == 0x00) else 'device'
294 o = [{'type': self.cmd, 'range': mosi_packet['range'],
295 'data': b, 'ann': '%s (%s ID first)' % (cmds[self.cmd], d)}]
296 elif self.cmdstate == 5:
297 # Byte 5: Slave sends manufacturer ID (or device ID).
298 self.ids = [miso_packet['data']]
299 o = []
300 elif self.cmdstate in (5, 6):
301 # Byte 6: Slave sends device ID (or manufacturer ID).
302 self.ids += [miso_packet['data']]
303 ann = 'Manufacturer' if self.manufacturer_id_first else 'Device'
304 o = [{'type': self.cmd, 'range': miso_packet['range'],
305 'data': '0x%02x' % self.ids[0], 'ann': ann}]
306 ann = 'Device' if self.manufacturer_id_first else 'Manufacturer'
307 o += [{'type': self.cmd, 'range': miso_packet['range'],
308 'data': '0x%02x' % self.ids[1], 'ann': '%s ID' % ann}]
309 else:
310 # TODO: Error?
311 pass
312
313 if self.cmdstate == 6:
314 self.end_sample = miso_packet['range'][1]
315 id = self.ids[1] if self.manufacturer_id_first else self.ids[0]
316 dev = 'Device: Macronix %s' % device_name[id]
317 o += [{'type': self.cmd,
318 'range': (self.start_sample, self.end_sample),
319 'data': None, # TODO: Both IDs? Which format?
320 'ann': dev}]
321 self.state = IDLE
322 else:
323 self.cmdstate += 1
324
325 self.out += o
326
f90fe506 327 def decode(self, timeoffset, duration, data):
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328 self.out = []
329
330 # Iterate over all SPI MISO/MOSI packets. TODO: HOLD#, WP#/ACC?
f90fe506 331 for i in range(len(miso_packets)):
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332
333 p_miso = miso_packets[i]
334 p_mosi = mosi_packets[i]
335
336 # Assumption: Every p_miso has a p_mosi entry with same range.
337
338 # For now, skip non-data packets.
339 if p_mosi['type'] != 'D':
340 continue
341
342 cmd = p_mosi['data']
343
344 # If we encountered a known chip command, enter the resp. state.
345 if self.state == IDLE:
346 if cmd in cmds:
347 self.state = cmd
348 self.cmd = cmd # TODO: Eliminate?
349 self.cmdstate = 1
350 else:
351 pass # TODO
352
353 # Handle commands.
354 # TODO: Use some generic way to invoke the resp. method.
355 if self.state == CMD_WREN:
356 self.handle_wren(p_miso, p_mosi)
357 elif self.state == CMD_SE:
358 self.handle_se(p_miso, p_mosi)
359 elif self.state == CMD_RDID:
360 self.handle_rdid(p_miso, p_mosi)
361 if self.state == CMD_REMS:
362 self.handle_rems(p_miso, p_mosi)
363 else:
364 pass
365
366 if self.out != []:
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367 # self.put(self.output_protocol, 0, 0, out_proto)
368 self.put(self.output_annotation, 0, 0, self.out)
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