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1/*
2 * This file is part of the libsigrok project.
3 *
4 * Copyright (C) 2010 Uwe Hermann <uwe@hermann-uwe.de>
5 * Copyright (C) 2011 Olivier Fauchon <olivier@aixmarseille.com>
6 * Copyright (C) 2012 Alexandru Gagniuc <mr.nuke.me@gmail.com>
7 * Copyright (C) 2015 Bartosz Golaszewski <bgolaszewski@baylibre.com>
8 *
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; either version 2 of the License, or
12 * (at your option) any later version.
13 *
14 * This program is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with this program; if not, see <http://www.gnu.org/licenses/>.
21 */
22
23#include <config.h>
24#include <stdlib.h>
25#include <string.h>
26#include <math.h>
27#include <libsigrok/libsigrok.h>
28#include "libsigrok-internal.h"
29#include "protocol.h"
30
31#define DEFAULT_NUM_LOGIC_CHANNELS 8
32#define DEFAULT_LOGIC_PATTERN PATTERN_SIGROK
33
34#define DEFAULT_NUM_ANALOG_CHANNELS 4
35#define DEFAULT_ANALOG_AMPLITUDE 10
36
37/* Note: No spaces allowed because of sigrok-cli. */
38static const char *logic_pattern_str[] = {
39 "sigrok",
40 "random",
41 "incremental",
42 "walking-one",
43 "walking-zero",
44 "all-low",
45 "all-high",
46 "squid",
47};
48
49static const uint32_t drvopts[] = {
50 SR_CONF_DEMO_DEV,
51 SR_CONF_LOGIC_ANALYZER,
52 SR_CONF_OSCILLOSCOPE,
53};
54
55static const uint32_t scanopts[] = {
56 SR_CONF_NUM_LOGIC_CHANNELS,
57 SR_CONF_NUM_ANALOG_CHANNELS,
58};
59
60static const uint32_t devopts[] = {
61 SR_CONF_CONTINUOUS,
62 SR_CONF_LIMIT_SAMPLES | SR_CONF_GET | SR_CONF_SET,
63 SR_CONF_LIMIT_MSEC | SR_CONF_GET | SR_CONF_SET,
64 SR_CONF_SAMPLERATE | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
65 SR_CONF_AVERAGING | SR_CONF_GET | SR_CONF_SET,
66 SR_CONF_AVG_SAMPLES | SR_CONF_GET | SR_CONF_SET,
67};
68
69static const uint32_t devopts_cg_logic[] = {
70 SR_CONF_PATTERN_MODE | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
71};
72
73static const uint32_t devopts_cg_analog_group[] = {
74 SR_CONF_AMPLITUDE | SR_CONF_GET | SR_CONF_SET,
75};
76
77static const uint32_t devopts_cg_analog_channel[] = {
78 SR_CONF_PATTERN_MODE | SR_CONF_GET | SR_CONF_SET | SR_CONF_LIST,
79 SR_CONF_AMPLITUDE | SR_CONF_GET | SR_CONF_SET,
80};
81
82static const uint64_t samplerates[] = {
83 SR_HZ(1),
84 SR_GHZ(1),
85 SR_HZ(1),
86};
87
88static GSList *scan(struct sr_dev_driver *di, GSList *options)
89{
90 struct dev_context *devc;
91 struct sr_dev_inst *sdi;
92 struct sr_channel *ch;
93 struct sr_channel_group *cg, *acg;
94 struct sr_config *src;
95 struct analog_gen *ag;
96 GSList *l;
97 int num_logic_channels, num_analog_channels, pattern, i;
98 char channel_name[16];
99
100 num_logic_channels = DEFAULT_NUM_LOGIC_CHANNELS;
101 num_analog_channels = DEFAULT_NUM_ANALOG_CHANNELS;
102 for (l = options; l; l = l->next) {
103 src = l->data;
104 switch (src->key) {
105 case SR_CONF_NUM_LOGIC_CHANNELS:
106 num_logic_channels = g_variant_get_int32(src->data);
107 break;
108 case SR_CONF_NUM_ANALOG_CHANNELS:
109 num_analog_channels = g_variant_get_int32(src->data);
110 break;
111 }
112 }
113
114 sdi = g_malloc0(sizeof(struct sr_dev_inst));
115 sdi->status = SR_ST_INACTIVE;
116 sdi->model = g_strdup("Demo device");
117
118 devc = g_malloc0(sizeof(struct dev_context));
119 devc->cur_samplerate = SR_KHZ(200);
120 devc->num_logic_channels = num_logic_channels;
121 devc->logic_unitsize = (devc->num_logic_channels + 7) / 8;
122 devc->logic_pattern = DEFAULT_LOGIC_PATTERN;
123 devc->num_analog_channels = num_analog_channels;
124
125 if (num_logic_channels > 0) {
126 /* Logic channels, all in one channel group. */
127 cg = g_malloc0(sizeof(struct sr_channel_group));
128 cg->name = g_strdup("Logic");
129 for (i = 0; i < num_logic_channels; i++) {
130 sprintf(channel_name, "D%d", i);
131 ch = sr_channel_new(sdi, i, SR_CHANNEL_LOGIC, TRUE, channel_name);
132 cg->channels = g_slist_append(cg->channels, ch);
133 }
134 sdi->channel_groups = g_slist_append(NULL, cg);
135 }
136
137 /* Analog channels, channel groups and pattern generators. */
138 devc->ch_ag = g_hash_table_new(g_direct_hash, g_direct_equal);
139 if (num_analog_channels > 0) {
140 pattern = 0;
141 /* An "Analog" channel group with all analog channels in it. */
142 acg = g_malloc0(sizeof(struct sr_channel_group));
143 acg->name = g_strdup("Analog");
144 sdi->channel_groups = g_slist_append(sdi->channel_groups, acg);
145
146 for (i = 0; i < num_analog_channels; i++) {
147 snprintf(channel_name, 16, "A%d", i);
148 ch = sr_channel_new(sdi, i + num_logic_channels, SR_CHANNEL_ANALOG,
149 TRUE, channel_name);
150 acg->channels = g_slist_append(acg->channels, ch);
151
152 /* Every analog channel gets its own channel group as well. */
153 cg = g_malloc0(sizeof(struct sr_channel_group));
154 cg->name = g_strdup(channel_name);
155 cg->channels = g_slist_append(NULL, ch);
156 sdi->channel_groups = g_slist_append(sdi->channel_groups, cg);
157
158 /* Every channel gets a generator struct. */
159 ag = g_malloc(sizeof(struct analog_gen));
160 ag->ch = ch;
161 ag->amplitude = DEFAULT_ANALOG_AMPLITUDE;
162 sr_analog_init(&ag->packet, &ag->encoding, &ag->meaning, &ag->spec, 2);
163 ag->packet.meaning->channels = cg->channels;
164 ag->packet.meaning->mq = 0;
165 ag->packet.meaning->mqflags = 0;
166 ag->packet.meaning->unit = SR_UNIT_VOLT;
167 ag->packet.data = ag->pattern_data;
168 ag->pattern = pattern;
169 ag->avg_val = 0.0f;
170 ag->num_avgs = 0;
171 g_hash_table_insert(devc->ch_ag, ch, ag);
172
173 if (++pattern == ARRAY_SIZE(analog_pattern_str))
174 pattern = 0;
175 }
176 }
177
178 sdi->priv = devc;
179
180 return std_scan_complete(di, g_slist_append(NULL, sdi));
181}
182
183static void clear_helper(struct dev_context *devc)
184{
185 GHashTableIter iter;
186 void *value;
187
188 /* Analog generators. */
189 g_hash_table_iter_init(&iter, devc->ch_ag);
190 while (g_hash_table_iter_next(&iter, NULL, &value))
191 g_free(value);
192 g_hash_table_unref(devc->ch_ag);
193}
194
195static int dev_clear(const struct sr_dev_driver *di)
196{
197 return std_dev_clear_with_callback(di, (std_dev_clear_callback)clear_helper);
198}
199
200static int config_get(uint32_t key, GVariant **data, const struct sr_dev_inst *sdi,
201 const struct sr_channel_group *cg)
202{
203 struct dev_context *devc;
204 struct sr_channel *ch;
205 struct analog_gen *ag;
206 int pattern;
207
208 if (!sdi)
209 return SR_ERR_ARG;
210
211 devc = sdi->priv;
212 switch (key) {
213 case SR_CONF_SAMPLERATE:
214 *data = g_variant_new_uint64(devc->cur_samplerate);
215 break;
216 case SR_CONF_LIMIT_SAMPLES:
217 *data = g_variant_new_uint64(devc->limit_samples);
218 break;
219 case SR_CONF_LIMIT_MSEC:
220 *data = g_variant_new_uint64(devc->limit_msec);
221 break;
222 case SR_CONF_AVERAGING:
223 *data = g_variant_new_boolean(devc->avg);
224 break;
225 case SR_CONF_AVG_SAMPLES:
226 *data = g_variant_new_uint64(devc->avg_samples);
227 break;
228 case SR_CONF_PATTERN_MODE:
229 if (!cg)
230 return SR_ERR_CHANNEL_GROUP;
231 /* Any channel in the group will do. */
232 ch = cg->channels->data;
233 if (ch->type == SR_CHANNEL_LOGIC) {
234 pattern = devc->logic_pattern;
235 *data = g_variant_new_string(logic_pattern_str[pattern]);
236 } else if (ch->type == SR_CHANNEL_ANALOG) {
237 ag = g_hash_table_lookup(devc->ch_ag, ch);
238 pattern = ag->pattern;
239 *data = g_variant_new_string(analog_pattern_str[pattern]);
240 } else
241 return SR_ERR_BUG;
242 break;
243 case SR_CONF_AMPLITUDE:
244 if (!cg)
245 return SR_ERR_CHANNEL_GROUP;
246 /* Any channel in the group will do. */
247 ch = cg->channels->data;
248 if (ch->type != SR_CHANNEL_ANALOG)
249 return SR_ERR_ARG;
250 ag = g_hash_table_lookup(devc->ch_ag, ch);
251 *data = g_variant_new_double(ag->amplitude);
252 break;
253 default:
254 return SR_ERR_NA;
255 }
256
257 return SR_OK;
258}
259
260static int config_set(uint32_t key, GVariant *data, const struct sr_dev_inst *sdi,
261 const struct sr_channel_group *cg)
262{
263 struct dev_context *devc;
264 struct analog_gen *ag;
265 struct sr_channel *ch;
266 GSList *l;
267 int logic_pattern, analog_pattern, ret;
268 unsigned int i;
269 const char *stropt;
270
271 devc = sdi->priv;
272
273 ret = SR_OK;
274 switch (key) {
275 case SR_CONF_SAMPLERATE:
276 devc->cur_samplerate = g_variant_get_uint64(data);
277 break;
278 case SR_CONF_LIMIT_SAMPLES:
279 devc->limit_msec = 0;
280 devc->limit_samples = g_variant_get_uint64(data);
281 break;
282 case SR_CONF_LIMIT_MSEC:
283 devc->limit_msec = g_variant_get_uint64(data);
284 devc->limit_samples = 0;
285 break;
286 case SR_CONF_AVERAGING:
287 devc->avg = g_variant_get_boolean(data);
288 sr_dbg("%s averaging", devc->avg ? "Enabling" : "Disabling");
289 break;
290 case SR_CONF_AVG_SAMPLES:
291 devc->avg_samples = g_variant_get_uint64(data);
292 sr_dbg("Setting averaging rate to %" PRIu64, devc->avg_samples);
293 break;
294 case SR_CONF_PATTERN_MODE:
295 if (!cg)
296 return SR_ERR_CHANNEL_GROUP;
297 stropt = g_variant_get_string(data, NULL);
298 logic_pattern = analog_pattern = -1;
299 for (i = 0; i < ARRAY_SIZE(logic_pattern_str); i++) {
300 if (!strcmp(stropt, logic_pattern_str[i])) {
301 logic_pattern = i;
302 break;
303 }
304 }
305 for (i = 0; i < ARRAY_SIZE(analog_pattern_str); i++) {
306 if (!strcmp(stropt, analog_pattern_str[i])) {
307 analog_pattern = i;
308 break;
309 }
310 }
311 if (logic_pattern == -1 && analog_pattern == -1)
312 return SR_ERR_ARG;
313 for (l = cg->channels; l; l = l->next) {
314 ch = l->data;
315 if (ch->type == SR_CHANNEL_LOGIC) {
316 if (logic_pattern == -1)
317 return SR_ERR_ARG;
318 sr_dbg("Setting logic pattern to %s",
319 logic_pattern_str[logic_pattern]);
320 devc->logic_pattern = logic_pattern;
321 /* Might as well do this now, these are static. */
322 if (logic_pattern == PATTERN_ALL_LOW)
323 memset(devc->logic_data, 0x00, LOGIC_BUFSIZE);
324 else if (logic_pattern == PATTERN_ALL_HIGH)
325 memset(devc->logic_data, 0xff, LOGIC_BUFSIZE);
326 } else if (ch->type == SR_CHANNEL_ANALOG) {
327 if (analog_pattern == -1)
328 return SR_ERR_ARG;
329 sr_dbg("Setting analog pattern for channel %s to %s",
330 ch->name, analog_pattern_str[analog_pattern]);
331 ag = g_hash_table_lookup(devc->ch_ag, ch);
332 ag->pattern = analog_pattern;
333 } else
334 return SR_ERR_BUG;
335 }
336 break;
337 case SR_CONF_AMPLITUDE:
338 if (!cg)
339 return SR_ERR_CHANNEL_GROUP;
340 for (l = cg->channels; l; l = l->next) {
341 ch = l->data;
342 if (ch->type != SR_CHANNEL_ANALOG)
343 return SR_ERR_ARG;
344 ag = g_hash_table_lookup(devc->ch_ag, ch);
345 ag->amplitude = g_variant_get_double(data);
346 }
347 break;
348 default:
349 ret = SR_ERR_NA;
350 }
351
352 return ret;
353}
354
355static int config_list(uint32_t key, GVariant **data, const struct sr_dev_inst *sdi,
356 const struct sr_channel_group *cg)
357{
358 struct sr_channel *ch;
359 GVariant *gvar;
360 GVariantBuilder gvb;
361
362 if (key == SR_CONF_SCAN_OPTIONS) {
363 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
364 scanopts, ARRAY_SIZE(scanopts), sizeof(uint32_t));
365 return SR_OK;
366 }
367
368 if (key == SR_CONF_DEVICE_OPTIONS && !sdi) {
369 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
370 drvopts, ARRAY_SIZE(drvopts), sizeof(uint32_t));
371 return SR_OK;
372 }
373
374 if (!sdi)
375 return SR_ERR_ARG;
376
377 if (!cg) {
378 switch (key) {
379 case SR_CONF_DEVICE_OPTIONS:
380 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
381 devopts, ARRAY_SIZE(devopts), sizeof(uint32_t));
382 break;
383 case SR_CONF_SAMPLERATE:
384 g_variant_builder_init(&gvb, G_VARIANT_TYPE("a{sv}"));
385 gvar = g_variant_new_fixed_array(G_VARIANT_TYPE("t"), samplerates,
386 ARRAY_SIZE(samplerates), sizeof(uint64_t));
387 g_variant_builder_add(&gvb, "{sv}", "samplerate-steps", gvar);
388 *data = g_variant_builder_end(&gvb);
389 break;
390 default:
391 return SR_ERR_NA;
392 }
393 } else {
394 ch = cg->channels->data;
395 switch (key) {
396 case SR_CONF_DEVICE_OPTIONS:
397 if (ch->type == SR_CHANNEL_LOGIC)
398 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
399 devopts_cg_logic, ARRAY_SIZE(devopts_cg_logic),
400 sizeof(uint32_t));
401 else if (ch->type == SR_CHANNEL_ANALOG) {
402 if (strcmp(cg->name, "Analog") == 0)
403 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
404 devopts_cg_analog_group, ARRAY_SIZE(devopts_cg_analog_group),
405 sizeof(uint32_t));
406 else
407 *data = g_variant_new_fixed_array(G_VARIANT_TYPE_UINT32,
408 devopts_cg_analog_channel, ARRAY_SIZE(devopts_cg_analog_channel),
409 sizeof(uint32_t));
410 }
411 else
412 return SR_ERR_BUG;
413 break;
414 case SR_CONF_PATTERN_MODE:
415 /* The analog group (with all 4 channels) shall not have a pattern property. */
416 if (strcmp(cg->name, "Analog") == 0)
417 return SR_ERR_NA;
418
419 if (ch->type == SR_CHANNEL_LOGIC)
420 *data = g_variant_new_strv(logic_pattern_str,
421 ARRAY_SIZE(logic_pattern_str));
422 else if (ch->type == SR_CHANNEL_ANALOG)
423 *data = g_variant_new_strv(analog_pattern_str,
424 ARRAY_SIZE(analog_pattern_str));
425 else
426 return SR_ERR_BUG;
427 break;
428 default:
429 return SR_ERR_NA;
430 }
431 }
432
433 return SR_OK;
434}
435
436static int dev_acquisition_start(const struct sr_dev_inst *sdi)
437{
438 struct dev_context *devc;
439 GSList *l;
440 struct sr_channel *ch;
441 int bitpos;
442 uint8_t mask;
443 GHashTableIter iter;
444 void *value;
445
446 devc = sdi->priv;
447 devc->sent_samples = 0;
448
449 /*
450 * Determine the numbers of logic and analog channels that are
451 * involved in the acquisition. Determine an offset and a mask to
452 * remove excess logic data content before datafeed submission.
453 */
454 devc->enabled_logic_channels = 0;
455 devc->enabled_analog_channels = 0;
456 for (l = sdi->channels; l; l = l->next) {
457 ch = l->data;
458 if (!ch->enabled)
459 continue;
460 if (ch->type == SR_CHANNEL_ANALOG) {
461 devc->enabled_analog_channels++;
462 continue;
463 }
464 if (ch->type != SR_CHANNEL_LOGIC)
465 continue;
466 /*
467 * TODO: Need we create a channel map here, such that the
468 * session datafeed packets will have a dense representation
469 * of the enabled channels' data? For example store channels
470 * D3 and D5 in bit positions 0 and 1 respectively, when all
471 * other channels are disabled? The current implementation
472 * generates a sparse layout, might provide data for logic
473 * channels that are disabled while it might suppress data
474 * from enabled channels at the same time.
475 */
476 devc->enabled_logic_channels++;
477 }
478 devc->first_partial_logic_index = devc->enabled_logic_channels / 8;
479 bitpos = devc->enabled_logic_channels % 8;
480 mask = (1 << bitpos) - 1;
481 devc->first_partial_logic_mask = mask;
482 sr_dbg("num logic %zu, partial off %zu, mask 0x%02x.",
483 devc->enabled_logic_channels,
484 devc->first_partial_logic_index,
485 devc->first_partial_logic_mask);
486
487 /*
488 * Have the waveform for analog patterns pre-generated. It's
489 * supposed to be periodic, so the generator just needs to
490 * access the prepared sample data (DDS style).
491 */
492 g_hash_table_iter_init(&iter, devc->ch_ag);
493 while (g_hash_table_iter_next(&iter, NULL, &value))
494 demo_generate_analog_pattern(value, devc->cur_samplerate);
495
496 sr_session_source_add(sdi->session, -1, 0, 100,
497 demo_prepare_data, (struct sr_dev_inst *)sdi);
498
499 std_session_send_df_header(sdi);
500
501 /* We use this timestamp to decide how many more samples to send. */
502 devc->start_us = g_get_monotonic_time();
503 devc->spent_us = 0;
504 devc->step = 0;
505
506 return SR_OK;
507}
508
509static int dev_acquisition_stop(struct sr_dev_inst *sdi)
510{
511 sr_session_source_remove(sdi->session, -1);
512 std_session_send_df_end(sdi);
513
514 return SR_OK;
515}
516
517static struct sr_dev_driver demo_driver_info = {
518 .name = "demo",
519 .longname = "Demo driver and pattern generator",
520 .api_version = 1,
521 .init = std_init,
522 .cleanup = std_cleanup,
523 .scan = scan,
524 .dev_list = std_dev_list,
525 .dev_clear = dev_clear,
526 .config_get = config_get,
527 .config_set = config_set,
528 .config_list = config_list,
529 .dev_open = std_dummy_dev_open,
530 .dev_close = std_dummy_dev_close,
531 .dev_acquisition_start = dev_acquisition_start,
532 .dev_acquisition_stop = dev_acquisition_stop,
533 .context = NULL,
534};
535SR_REGISTER_DEV_DRIVER(demo_driver_info);