]> sigrok.org Git - libsigrokdecode.git/blame - decoders/edid/pd.py
sdcard_spi: Define annotation rows.
[libsigrokdecode.git] / decoders / edid / pd.py
CommitLineData
91b2e171 1##
50bd5d25 2## This file is part of the libsigrokdecode project.
91b2e171
BV
3##
4## Copyright (C) 2012 Bert Vermeulen <bert@biot.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 3 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
91b2e171
BV
20# TODO:
21# - EDID < 1.3
1063646c 22# - add short annotations
91b2e171
BV
23# - Signal level standard field in basic display parameters block
24# - Additional color point descriptors
25# - Additional standard timing descriptors
26# - Extensions
27
28import sigrokdecode as srd
29import os
30
31EDID_HEADER = [0x00, 0xff, 0xff, 0xff, 0xff, 0xff, 0xff, 0x00]
32OFF_VENDOR = 8
33OFF_VERSION = 18
34OFF_BASIC = 20
35OFF_CHROM = 25
36OFF_EST_TIMING = 35
37OFF_STD_TIMING = 38
38OFF_DET_TIMING = 54
39OFF_NUM_EXT = 126
40OFF_CHECKSUM = 127
41
91b2e171
BV
42# Pre-EDID established timing modes
43est_modes = [
09059016
UH
44 '720x400@70Hz',
45 '720x400@88Hz',
46 '640x480@60Hz',
47 '640x480@67Hz',
48 '640x480@72Hz',
49 '640x480@75Hz',
50 '800x600@56Hz',
51 '800x600@60Hz',
52 '800x600@72Hz',
53 '800x600@75Hz',
54 '832x624@75Hz',
55 '1024x768@87Hz(i)',
56 '1024x768@60Hz',
57 '1024x768@70Hz',
58 '1024x768@75Hz',
59 '1280x1024@75Hz',
60 '1152x870@75Hz',
91b2e171
BV
61]
62
63# X:Y display aspect ratios, as used in standard timing modes
64xy_ratio = [
65 (16, 10),
66 (4, 3),
67 (5, 4),
e4f82268 68 (16, 9),
91b2e171
BV
69]
70
71# Annotation types
72ANN_FIELDS = 0
73ANN_SECTIONS = 1
74
75class Decoder(srd.Decoder):
76 api_version = 1
77 id = 'edid'
78 name = 'EDID'
b7a7e6f5 79 longname = 'Extended Display Identification Data'
a465436e 80 desc = 'Data structure describing display device capabilities.'
91b2e171 81 license = 'gplv3+'
9e1437a0 82 inputs = ['i2c']
91b2e171 83 outputs = ['edid']
9e1437a0
UH
84 probes = []
85 optional_probes = []
91b2e171
BV
86 options = {}
87 annotations = [
fbd226c3
BV
88 ['fields', 'EDID structure fields'],
89 ['sections', 'EDID structure sections'],
91b2e171
BV
90 ]
91
92 def __init__(self, **kwargs):
93 self.state = None
94 # Received data items, used as an index into samplenum/data
95 self.cnt = 0
96 # Start/end sample numbers per data item
97 self.sn = []
98 # Received data
99 self.cache = []
100
8915b346 101 def start(self):
be465111 102 self.out_ann = self.register(srd.OUTPUT_ANN)
91b2e171
BV
103
104 def decode(self, ss, es, data):
48eee789
UH
105 cmd, data = data
106
107 # We only care about actual data bytes that are read (for now).
108 if cmd != 'DATA READ':
109 return
110
91b2e171 111 self.cnt += 1
e4f82268 112 self.sn.append([ss, es])
91b2e171 113 self.cache.append(data)
2a706c20 114 # debug
09059016 115# self.put(ss, es, self.out_ann, [0, ['%d: [%.2x]' % (self.cnt, data)]])
91b2e171
BV
116
117 if self.state is None:
118 # Wait for the EDID header
119 if self.cnt >= OFF_VENDOR:
120 if self.cache[-8:] == EDID_HEADER:
121 # Throw away any garbage before the header
122 self.sn = self.sn[-8:]
123 self.cache = self.cache[-8:]
2a706c20 124 self.cnt = 8
91b2e171 125 self.state = 'edid'
09059016 126 self.put(ss, es, self.out_ann, [0, ['EDID header']])
91b2e171
BV
127 elif self.state == 'edid':
128 if self.cnt == OFF_VERSION:
129 self.decode_vid(-10)
130 self.decode_pid(-8)
131 self.decode_serial(-6)
132 self.decode_mfrdate(-2)
133 elif self.cnt == OFF_BASIC:
09059016 134 version = 'EDID version: %d.%d' % (self.cache[-2], self.cache[-1])
91b2e171
BV
135 self.put(ss, es, self.out_ann, [0, [version]])
136 elif self.cnt == OFF_CHROM:
137 self.decode_basicdisplay(-5)
138 elif self.cnt == OFF_EST_TIMING:
139 self.decode_chromaticity(-10)
140 elif self.cnt == OFF_STD_TIMING:
141 self.decode_est_timing(-3)
142 elif self.cnt == OFF_DET_TIMING:
143 self.decode_std_timing(-16)
144 elif self.cnt == OFF_NUM_EXT:
145 self.decode_descriptors(-72)
146 elif self.cnt == OFF_CHECKSUM:
09059016
UH
147 self.put(ss, es, self.out_ann,
148 [0, ['Extensions present: %d' % self.cache[self.cnt-1]]])
91b2e171
BV
149 elif self.cnt == OFF_CHECKSUM+1:
150 checksum = 0
151 for i in range(128):
152 checksum += self.cache[i]
153 if checksum % 256 == 0:
09059016 154 csstr = 'OK'
91b2e171 155 else:
09059016
UH
156 csstr = 'WRONG!'
157 self.put(ss, es, self.out_ann, [0, ['Checksum: %d (%s)' % (
158 self.cache[self.cnt-1], csstr)]])
91b2e171
BV
159 self.state = 'extensions'
160 elif self.state == 'extensions':
161 pass
162
163 def ann_field(self, start, end, annotation):
09059016
UH
164 self.put(self.sn[start][0], self.sn[end][1],
165 self.out_ann, [ANN_FIELDS, [annotation]])
91b2e171
BV
166
167 def lookup_pnpid(self, pnpid):
1063646c 168 pnpid_file = os.path.join(os.path.dirname(__file__), 'pnpids.txt')
91b2e171
BV
169 if os.path.exists(pnpid_file):
170 for line in open(pnpid_file).readlines():
171 if line.find(pnpid + ';') == 0:
172 return line[4:].strip()
173 return ''
174
175 def decode_vid(self, offset):
176 pnpid = chr(64 + ((self.cache[offset] & 0x7c) >> 2))
177 pnpid += chr(64 + (((self.cache[offset] & 0x03) << 3)
178 | ((self.cache[offset+1] & 0xe0) >> 5)))
179 pnpid += chr(64 + (self.cache[offset+1] & 0x1f))
180 vendor = self.lookup_pnpid(pnpid)
181 if vendor:
09059016 182 pnpid += ' (%s)' % vendor
91b2e171
BV
183 self.ann_field(offset, offset+1, pnpid)
184
185 def decode_pid(self, offset):
09059016 186 pidstr = 'Product 0x%.2x%.2x' % (self.cache[offset+1], self.cache[offset])
91b2e171
BV
187 self.ann_field(offset, offset+1, pidstr)
188
189 def decode_serial(self, offset):
190 serialnum = (self.cache[offset+3] << 24) \
191 + (self.cache[offset+2] << 16) \
192 + (self.cache[offset+1] << 8) \
193 + self.cache[offset]
194 serialstr = ''
195 is_alnum = True
196 for i in range(4):
197 if not chr(self.cache[offset+3-i]).isalnum():
198 is_alnum = False
199 break
200 serialstr += chr(self.cache[offset+3-i])
09059016
UH
201 serial = serialstr if is_alnum else str(serialnum)
202 self.ann_field(offset, offset+3, 'Serial ' + serial)
91b2e171
BV
203
204 def decode_mfrdate(self, offset):
205 datestr = ''
206 if self.cache[offset]:
09059016 207 datestr += 'week %d, ' % self.cache[offset]
91b2e171
BV
208 datestr += str(1990 + self.cache[offset+1])
209 if datestr:
09059016 210 self.ann_field(offset, offset+1, 'Manufactured ' + datestr)
91b2e171
BV
211
212 def decode_basicdisplay(self, offset):
213 # Video input definition
214 vid = self.cache[offset]
215 if vid & 0x80:
216 # Digital
09059016 217 self.ann_field(offset, offset, 'Video input: VESA DFP 1.')
91b2e171
BV
218 else:
219 # Analog
220 sls = (vid & 60) >> 5
09059016 221 self.ann_field(offset, offset, 'Signal level standard: %.2x' % sls)
91b2e171 222 if vid & 0x10:
09059016 223 self.ann_field(offset, offset, 'Blank-to-black setup expected')
91b2e171
BV
224 syncs = ''
225 if vid & 0x08:
226 syncs += 'separate syncs, '
227 if vid & 0x04:
228 syncs += 'composite syncs, '
229 if vid & 0x02:
230 syncs += 'sync on green, '
231 if vid & 0x01:
232 syncs += 'Vsync serration required, '
233 if syncs:
09059016 234 self.ann_field(offset, offset, 'Supported syncs: %s' % syncs[:-2])
91b2e171
BV
235 # Max horizontal/vertical image size
236 if self.cache[offset+1] != 0 and self.cache[offset+2] != 0:
237 # Projectors have this set to 0
09059016
UH
238 sizestr = '%dx%dcm' % (self.cache[offset+1], self.cache[offset+2])
239 self.ann_field(offset+1, offset+2, 'Physical size: ' + sizestr)
91b2e171
BV
240 # Display transfer characteristic (gamma)
241 if self.cache[offset+3] != 0xff:
242 gamma = (self.cache[offset+3] + 100) / 100
09059016 243 self.ann_field(offset+3, offset+3, 'Gamma: %1.2f' % gamma)
91b2e171
BV
244 # Feature support
245 fs = self.cache[offset+4]
246 dpms = ''
247 if fs & 0x80:
248 dpms += 'standby, '
249 if fs & 0x40:
250 dpms += 'suspend, '
251 if fs & 0x20:
252 dpms += 'active off, '
253 if dpms:
09059016 254 self.ann_field(offset+4, offset+4, 'DPMS support: %s' % dpms[:-2])
91b2e171
BV
255 dt = (fs & 0x18) >> 3
256 dtstr = ''
257 if dt == 0:
258 dtstr = 'Monochrome'
259 elif dt == 1:
260 dtstr = 'RGB color'
261 elif dt == 2:
e4f82268 262 dtstr = 'non-RGB multicolor'
91b2e171 263 if dtstr:
09059016 264 self.ann_field(offset+4, offset+4, 'Display type: %s' % dtstr)
91b2e171 265 if fs & 0x04:
09059016 266 self.ann_field(offset+4, offset+4, 'Color space: standard sRGB')
91b2e171
BV
267 # Save this for when we decode the first detailed timing descriptor
268 self.have_preferred_timing = (fs & 0x02) == 0x02
269 if fs & 0x01:
270 gft = ''
271 else:
272 gft = 'not '
09059016
UH
273 self.ann_field(offset+4, offset+4,
274 'Generalized timing formula: %ssupported' % gft)
91b2e171
BV
275
276 def convert_color(self, value):
277 # Convert from 10-bit packet format to float
278 outval = 0.0
279 for i in range(10):
280 if value & 0x01:
281 outval += 2 ** -(10-i)
282 value >>= 1
283 return outval
284
285 def decode_chromaticity(self, offset):
286 redx = (self.cache[offset+2] << 2) + ((self.cache[offset] & 0xc0) >> 6)
287 redy = (self.cache[offset+3] << 2) + ((self.cache[offset] & 0x30) >> 4)
09059016
UH
288 self.ann_field(offset, offset+9, 'Chromacity red: X %1.3f, Y %1.3f' % (
289 self.convert_color(redx), self.convert_color(redy)))
91b2e171
BV
290
291 greenx = (self.cache[offset+4] << 2) + ((self.cache[offset] & 0x0c) >> 6)
292 greeny = (self.cache[offset+5] << 2) + ((self.cache[offset] & 0x03) >> 4)
09059016
UH
293 self.ann_field(offset, offset+9, 'Chromacity green: X %1.3f, Y %1.3f' % (
294 self.convert_color(greenx), self.convert_color(greeny)))
91b2e171
BV
295
296 bluex = (self.cache[offset+6] << 2) + ((self.cache[offset+1] & 0xc0) >> 6)
297 bluey = (self.cache[offset+7] << 2) + ((self.cache[offset+1] & 0x30) >> 4)
09059016
UH
298 self.ann_field(offset, offset+9, 'Chromacity blue: X %1.3f, Y %1.3f' % (
299 self.convert_color(bluex), self.convert_color(bluey)))
91b2e171
BV
300
301 whitex = (self.cache[offset+8] << 2) + ((self.cache[offset+1] & 0x0c) >> 6)
302 whitey = (self.cache[offset+9] << 2) + ((self.cache[offset+1] & 0x03) >> 4)
09059016
UH
303 self.ann_field(offset, offset+9, 'Chromacity white: X %1.3f, Y %1.3f' % (
304 self.convert_color(whitex), self.convert_color(whitey)))
91b2e171
BV
305
306 def decode_est_timing(self, offset):
307 # Pre-EDID modes
308 bitmap = (self.cache[offset] << 9) \
309 + (self.cache[offset+1] << 1) \
310 + ((self.cache[offset+2] & 0x80) >> 7)
311 modestr = ''
312 for i in range(17):
313 if bitmap & (1 << (16-i)):
314 modestr += est_modes[i] + ', '
315 if modestr:
09059016
UH
316 self.ann_field(offset, offset+2,
317 'Supported establised modes: %s' % modestr[:-2])
91b2e171
BV
318
319 def decode_std_timing(self, offset):
320 modestr = ''
321 for i in range(0, 16, 2):
322 if self.cache[offset+i] == 0x01 and self.cache[offset+i+1] == 0x01:
323 # Unused field
324 continue
325 x = (self.cache[offset+i] + 31) * 8
326 ratio = (self.cache[offset+i+1] & 0xc0) >> 6
327 ratio_x, ratio_y = xy_ratio[ratio]
328 y = x / ratio_x * ratio_y
329 refresh = (self.cache[offset+i+1] & 0x3f) + 60
09059016 330 modestr += '%dx%d@%dHz, ' % (x, y, refresh)
91b2e171 331 if modestr:
09059016
UH
332 self.ann_field(offset, offset+2,
333 'Supported standard modes: %s' % modestr[:-2])
91b2e171
BV
334
335 def decode_detailed_timing(self, offset):
336 if offset == -72 and self.have_preferred_timing:
337 # Only on first detailed timing descriptor
338 section = 'Preferred'
339 else:
340 section = 'Detailed'
341 section += ' timing descriptor'
342 self.put(self.sn[offset][0], self.sn[offset+18][1],
343 self.out_ann, [ANN_SECTIONS, [section]])
344
345 pixclock = float((self.cache[offset+1] << 8) + self.cache[offset]) / 100
09059016 346 self.ann_field(offset, offset+1, 'Pixel clock: %.2f MHz' % pixclock)
91b2e171
BV
347
348 horiz_active = ((self.cache[offset+4] & 0xf0) << 4) + self.cache[offset+2]
09059016 349 self.ann_field(offset+2, offset+4, 'Horizontal active: %d' % horiz_active)
91b2e171
BV
350
351 horiz_blank = ((self.cache[offset+4] & 0x0f) << 8) + self.cache[offset+3]
09059016 352 self.ann_field(offset+3, offset+4, 'Horizontal blanking: %d' % horiz_blank)
91b2e171
BV
353
354 vert_active = ((self.cache[offset+7] & 0xf0) << 4) + self.cache[offset+5]
09059016 355 self.ann_field(offset+5, offset+7, 'Vertical active: %d' % vert_active)
91b2e171
BV
356
357 vert_blank = ((self.cache[offset+7] & 0x0f) << 8) + self.cache[offset+6]
09059016 358 self.ann_field(offset+6, offset+7, 'Vertical blanking: %d' % vert_blank)
91b2e171
BV
359
360 horiz_sync_off = ((self.cache[offset+11] & 0xc0) << 2) + self.cache[offset+8]
09059016 361 self.ann_field(offset+8, offset+11, 'Horizontal sync offset: %d' % horiz_sync_off)
91b2e171
BV
362
363 horiz_sync_pw = ((self.cache[offset+11] & 0x30) << 4) + self.cache[offset+9]
09059016 364 self.ann_field(offset+9, offset+11, 'Horizontal sync pulse width: %d' % horiz_sync_pw)
91b2e171
BV
365
366 vert_sync_off = ((self.cache[offset+11] & 0x0c) << 2) \
367 + ((self.cache[offset+10] & 0xf0) >> 4)
09059016 368 self.ann_field(offset+10, offset+11, 'Vertical sync offset: %d' % vert_sync_off)
91b2e171
BV
369
370 vert_sync_pw = ((self.cache[offset+11] & 0x03) << 4) \
371 + (self.cache[offset+10] & 0x0f)
09059016 372 self.ann_field(offset+10, offset+11, 'Vertical sync pulse width: %d' % vert_sync_pw)
91b2e171
BV
373
374 horiz_size = ((self.cache[offset+14] & 0xf0) << 4) + self.cache[offset+12]
375 vert_size = ((self.cache[offset+14] & 0x0f) << 8) + self.cache[offset+13]
09059016 376 self.ann_field(offset+12, offset+14, 'Physical size: %dx%dmm' % (horiz_size, vert_size))
91b2e171
BV
377
378 horiz_border = self.cache[offset+15]
379 if horiz_border:
09059016 380 self.ann_field(offset+15, offset+15, 'Horizontal border: %d pixels' % horiz_border)
91b2e171
BV
381 vert_border = self.cache[offset+16]
382 if vert_border:
09059016 383 self.ann_field(offset+16, offset+16, 'Vertical border: %d lines' % vert_border)
91b2e171
BV
384
385 features = 'Flags: '
386 if self.cache[offset+17] & 0x80:
387 features += 'interlaced, '
388 stereo = (self.cache[offset+17] & 0x60) >> 5
389 if stereo:
390 if self.cache[offset+17] & 0x01:
391 features += '2-way interleaved stereo ('
09059016
UH
392 features += ['right image on even lines',
393 'left image on even lines',
91b2e171
BV
394 'side-by-side'][stereo-1]
395 features += '), '
396 else:
397 features += 'field sequential stereo ('
398 features += ['right image on sync=1', 'left image on sync=1',
399 '4-way interleaved'][stereo-1]
400 features += '), '
401 sync = (self.cache[offset+17] & 0x18) >> 3
402 sync2 = (self.cache[offset+17] & 0x06) >> 1
403 posneg = ['negative', 'positive']
404 features += 'sync type '
405 if sync == 0x00:
406 features += 'analog composite (serrate on RGB)'
407 elif sync == 0x01:
408 features += 'bipolar analog composite (serrate on RGB)'
409 elif sync == 0x02:
410 features += 'digital composite (serrate on composite polarity ' \
09059016 411 + (posneg[sync2 & 0x01]) + ')'
91b2e171
BV
412 elif sync == 0x03:
413 features += 'digital separate ('
2a706c20 414 features += 'Vsync polarity ' + (posneg[(sync2 & 0x02) >> 1])
91b2e171
BV
415 features += ', Hsync polarity ' + (posneg[sync2 & 0x01])
416 features += ')'
417 features += ', '
418 self.ann_field(offset+17, offset+17, features[:-2])
419
420 def decode_descriptor(self, offset):
421 tag = self.cache[offset+3]
422 if tag == 0xff:
423 # Monitor serial number
424 text = bytes(self.cache[offset+5:][:13]).decode(encoding='cp437', errors='replace')
09059016 425 self.ann_field(offset, offset+17, 'Serial number: %s' % text.strip())
91b2e171
BV
426 elif tag == 0xfe:
427 # Text
428 text = bytes(self.cache[offset+5:][:13]).decode(encoding='cp437', errors='replace')
09059016 429 self.ann_field(offset, offset+17, 'Info: %s' % text.strip())
91b2e171
BV
430 elif tag == 0xfc:
431 # Monitor name
432 text = bytes(self.cache[offset+5:][:13]).decode(encoding='cp437', errors='replace')
09059016 433 self.ann_field(offset, offset+17, 'Model name: %s' % text.strip())
91b2e171
BV
434 elif tag == 0xfd:
435 # Monitor range limits
436 self.put(self.sn[offset][0], self.sn[offset+17][1], self.out_ann,
09059016
UH
437 [ANN_SECTIONS, ['Monitor range limits']])
438 self.ann_field(offset+5, offset+5, 'Minimum vertical rate: %dHz' %
91b2e171 439 self.cache[offset+5])
09059016 440 self.ann_field(offset+6, offset+6, 'Maximum vertical rate: %dHz' %
91b2e171 441 self.cache[offset+6])
09059016 442 self.ann_field(offset+7, offset+7, 'Minimum horizontal rate: %dkHz' %
91b2e171 443 self.cache[offset+7])
09059016 444 self.ann_field(offset+8, offset+8, 'Maximum horizontal rate: %dkHz' %
91b2e171 445 self.cache[offset+8])
09059016 446 self.ann_field(offset+9, offset+9, 'Maximum pixel clock: %dMHz' %
91b2e171
BV
447 (self.cache[offset+9] * 10))
448 if self.cache[offset+10] == 0x02:
449 # Secondary GTF curve supported
09059016 450 self.ann_field(offset+10, offset+17, 'Secondary timing formula supported')
91b2e171
BV
451 elif tag == 0xfb:
452 # Additional color point data
453 self.put(self.sn[offset][0], self.sn[offset+17][1], self.out_ann,
09059016 454 [ANN_SECTIONS, ['Additional color point data']])
91b2e171
BV
455 elif tag == 0xfa:
456 # Additional standard timing definitions
457 self.put(self.sn[offset][0], self.sn[offset+17][1], self.out_ann,
09059016 458 [ANN_SECTIONS, ['Additional standard timing definitions']])
91b2e171
BV
459 else:
460 self.put(self.sn[offset][0], self.sn[offset+17][1], self.out_ann,
09059016 461 [ANN_SECTIONS, ['Unknown descriptor']])
91b2e171
BV
462
463 def decode_descriptors(self, offset):
464 # 4 consecutive 18-byte descriptor blocks
465 for i in range(offset, 0, 18):
466 if self.cache[i] != 0 and self.cache[i+1] != 0:
467 self.decode_detailed_timing(i)
468 else:
1063646c 469 if self.cache[i+2] == 0 or self.cache[i+4] == 0:
91b2e171
BV
470 self.decode_descriptor(i)
471