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1/*
2 * This file is part of the sigrok-cli project.
3 *
4 * Copyright (C) 2013 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
20#include <config.h>
21#include <glib.h>
22#include <string.h>
23#include "sigrok-cli.h"
24
25static gint sort_inputs(gconstpointer a, gconstpointer b)
26{
27 return strcmp(sr_input_id_get((struct sr_input_module *)a),
28 sr_input_id_get((struct sr_input_module *)b));
29}
30
31static gint sort_outputs(gconstpointer a, gconstpointer b)
32{
33 return strcmp(sr_output_id_get((struct sr_output_module *)a),
34 sr_output_id_get((struct sr_output_module *)b));
35}
36
37static gint sort_transforms(gconstpointer a, gconstpointer b)
38{
39 return strcmp(sr_transform_id_get((struct sr_transform_module *)a),
40 sr_transform_id_get((struct sr_transform_module *)b));
41}
42
43static gint sort_drivers(gconstpointer a, gconstpointer b)
44{
45 const struct sr_dev_driver *sdda = a, *sddb = b;
46
47 return strcmp(sdda->name, sddb->name);
48}
49
50#ifdef HAVE_SRD
51static gint sort_pds(gconstpointer a, gconstpointer b)
52{
53 const struct srd_decoder *sda = a, *sdb = b;
54
55 return strcmp(sda->id, sdb->id);
56}
57#endif
58
59void show_version(void)
60{
61 GString *s;
62 GSList *l, *l_orig, *m;
63 char *str;
64 const char *lib, *version;
65
66 printf("sigrok-cli %s\n\n", SC_PACKAGE_VERSION_STRING);
67
68 printf("Libraries and features:\n");
69
70 printf("- libsigrok %s/%s (rt: %s/%s).\n",
71 SR_PACKAGE_VERSION_STRING, SR_LIB_VERSION_STRING,
72 sr_package_version_string_get(), sr_lib_version_string_get());
73
74 s = g_string_sized_new(200);
75 g_string_append(s, " - Libs:\n");
76 l_orig = sr_buildinfo_libs_get();
77 for (l = l_orig; l; l = l->next) {
78 m = l->data;
79 lib = m->data;
80 version = m->next->data;
81 g_string_append_printf(s, " - %s %s\n", lib, version);
82 g_slist_free_full(m, g_free);
83 }
84 g_slist_free(l_orig);
85 s->str[s->len - 1] = '\0';
86 printf("%s\n", s->str);
87 g_string_free(s, TRUE);
88
89 str = sr_buildinfo_host_get();
90 printf(" - Host: %s.\n", str);
91 g_free(str);
92
93 str = sr_buildinfo_scpi_backends_get();
94 printf(" - SCPI backends: %s.\n", str);
95 g_free(str);
96
97#ifdef HAVE_SRD
98 printf("- libsigrokdecode %s/%s (rt: %s/%s).\n",
99 SRD_PACKAGE_VERSION_STRING, SRD_LIB_VERSION_STRING,
100 srd_package_version_string_get(), srd_lib_version_string_get());
101
102 s = g_string_sized_new(200);
103 g_string_append(s, " - Libs:\n");
104 l_orig = srd_buildinfo_libs_get();
105 for (l = l_orig; l; l = l->next) {
106 m = l->data;
107 lib = m->data;
108 version = m->next->data;
109 g_string_append_printf(s, " - %s %s\n", lib, version);
110 g_slist_free_full(m, g_free);
111 }
112 g_slist_free(l_orig);
113 s->str[s->len - 1] = '\0';
114 printf("%s\n", s->str);
115 g_string_free(s, TRUE);
116
117 str = srd_buildinfo_host_get();
118 printf(" - Host: %s.\n", str);
119 g_free(str);
120#endif
121}
122
123void show_supported(void)
124{
125 struct sr_dev_driver **drivers, *driver;
126 const struct sr_input_module **inputs, *input;
127 const struct sr_output_module **outputs, *output;
128 const struct sr_transform_module **transforms, *transform;
129 const GSList *l;
130 GSList *sl;
131 int i;
132#ifdef HAVE_SRD
133 struct srd_decoder *dec;
134#endif
135
136 printf("Supported hardware drivers:\n");
137 drivers = sr_driver_list(sr_ctx);
138 for (sl = NULL, i = 0; drivers[i]; i++)
139 sl = g_slist_append(sl, drivers[i]);
140 sl = g_slist_sort(sl, sort_drivers);
141 for (l = sl; l; l = l->next) {
142 driver = l->data;
143 printf(" %-20s %s\n", driver->name, driver->longname);
144 }
145 printf("\n");
146 g_slist_free(sl);
147
148 printf("Supported input formats:\n");
149 inputs = sr_input_list();
150 for (sl = NULL, i = 0; inputs[i]; i++)
151 sl = g_slist_append(sl, (gpointer)inputs[i]);
152 sl = g_slist_sort(sl, sort_inputs);
153 for (l = sl; l; l = l->next) {
154 input = l->data;
155 printf(" %-20s %s\n", sr_input_id_get(input),
156 sr_input_description_get(input));
157 }
158 printf("\n");
159 g_slist_free(sl);
160
161 printf("Supported output formats:\n");
162 outputs = sr_output_list();
163 for (sl = NULL, i = 0; outputs[i]; i++)
164 sl = g_slist_append(sl, (gpointer)outputs[i]);
165 sl = g_slist_sort(sl, sort_outputs);
166 for (l = sl; l; l = l->next) {
167 output = l->data;
168 printf(" %-20s %s\n", sr_output_id_get(output),
169 sr_output_description_get(output));
170 }
171 printf("\n");
172 g_slist_free(sl);
173
174 printf("Supported transform modules:\n");
175 transforms = sr_transform_list();
176 for (sl = NULL, i = 0; transforms[i]; i++)
177 sl = g_slist_append(sl, (gpointer)transforms[i]);
178 sl = g_slist_sort(sl, sort_transforms);
179 for (l = sl; l; l = l->next) {
180 transform = l->data;
181 printf(" %-20s %s\n", sr_transform_id_get(transform),
182 sr_transform_description_get(transform));
183 }
184 printf("\n");
185 g_slist_free(sl);
186
187#ifdef HAVE_SRD
188 if (srd_init(NULL) == SRD_OK) {
189 printf("Supported protocol decoders:\n");
190 srd_decoder_load_all();
191 sl = g_slist_copy((GSList *)srd_decoder_list());
192 sl = g_slist_sort(sl, sort_pds);
193 for (l = sl; l; l = l->next) {
194 dec = l->data;
195 printf(" %-20s %s\n", dec->id, dec->longname);
196 /* Print protocol description upon "-l 3" or higher. */
197 if (opt_loglevel >= SR_LOG_INFO)
198 printf(" %-20s %s\n", "", dec->desc);
199 }
200 g_slist_free(sl);
201 srd_exit();
202 }
203 printf("\n");
204#endif
205}
206
207static gint sort_channels(gconstpointer a, gconstpointer b)
208{
209 const struct sr_channel *pa = a, *pb = b;
210
211 return pa->index - pb->index;
212}
213
214static void print_dev_line(const struct sr_dev_inst *sdi)
215{
216 struct sr_channel *ch;
217 GSList *sl, *l, *channels;
218 GString *s;
219 GVariant *gvar;
220 struct sr_dev_driver *driver;
221 const char *vendor, *model, *version;
222
223 driver = sr_dev_inst_driver_get(sdi);
224 vendor = sr_dev_inst_vendor_get(sdi);
225 model = sr_dev_inst_model_get(sdi);
226 version = sr_dev_inst_version_get(sdi);
227 channels = sr_dev_inst_channels_get(sdi);
228
229 s = g_string_sized_new(128);
230 g_string_assign(s, driver->name);
231 if (maybe_config_get(driver, sdi, NULL, SR_CONF_CONN, &gvar) == SR_OK) {
232 g_string_append(s, ":conn=");
233 g_string_append(s, g_variant_get_string(gvar, NULL));
234 g_variant_unref(gvar);
235 }
236 g_string_append(s, " - ");
237 if (vendor && vendor[0])
238 g_string_append_printf(s, "%s ", vendor);
239 if (model && model[0])
240 g_string_append_printf(s, "%s ", model);
241 if (version && version[0])
242 g_string_append_printf(s, "%s ", version);
243 if (channels) {
244 if (g_slist_length(channels) == 1) {
245 ch = channels->data;
246 g_string_append_printf(s, "with 1 channel: %s", ch->name);
247 } else {
248 sl = g_slist_sort(g_slist_copy(channels), sort_channels);
249 g_string_append_printf(s, "with %d channels:", g_slist_length(sl));
250 for (l = sl; l; l = l->next) {
251 ch = l->data;
252 g_string_append_printf(s, " %s", ch->name);
253 }
254 g_slist_free(sl);
255 }
256 }
257 g_string_append_printf(s, "\n");
258 printf("%s", s->str);
259 g_string_free(s, TRUE);
260
261}
262
263void show_dev_list(void)
264{
265 struct sr_dev_inst *sdi;
266 GSList *devices, *l;
267
268 if (!(devices = device_scan()))
269 return;
270
271 printf("The following devices were found:\n");
272 for (l = devices; l; l = l->next) {
273 sdi = l->data;
274 print_dev_line(sdi);
275 }
276 g_slist_free(devices);
277
278}
279
280void show_drv_detail(struct sr_dev_driver *driver)
281{
282 const struct sr_key_info *srci;
283 GArray *opts;
284 guint i;
285
286 if ((opts = sr_dev_options(driver, NULL, NULL))) {
287 if (opts->len > 0) {
288 printf("Driver functions:\n");
289 for (i = 0; i < opts->len; i++) {
290 if (!(srci = sr_key_info_get(SR_KEY_CONFIG,
291 g_array_index(opts, uint32_t, i))))
292 continue;
293 printf(" %s\n", srci->name);
294 }
295 }
296 g_array_free(opts, TRUE);
297 }
298
299 if ((opts = sr_driver_scan_options_list(driver))) {
300 if (opts->len > 0) {
301 printf("Scan options:\n");
302 for (i = 0; i < opts->len; i++) {
303 if (!(srci = sr_key_info_get(SR_KEY_CONFIG,
304 g_array_index(opts, uint32_t, i))))
305 continue;
306 printf(" %s\n", srci->id);
307 }
308 }
309 g_array_free(opts, TRUE);
310 }
311}
312
313void show_dev_detail(void)
314{
315 struct sr_dev_driver *driver_from_opt, *driver;
316 struct sr_dev_inst *sdi;
317 const struct sr_key_info *srci, *srmqi, *srmqfi;
318 struct sr_channel *ch;
319 struct sr_channel_group *channel_group, *cg;
320 GSList *devices, *cgl, *chl, *channel_groups;
321 GVariant *gvar_dict, *gvar_list, *gvar;
322 gsize num_elements;
323 double dlow, dhigh, dcur_low, dcur_high;
324 const uint64_t *uint64;
325 uint64_t p = 0, q = 0, low = 0, high = 0;
326 uint64_t tmp_uint64, mask, cur_low, cur_high, cur_p, cur_q;
327 GArray *opts;
328 const int32_t *int32;
329 uint32_t key, o, cur_mq, mq;
330 uint64_t cur_mqflags, mqflags;
331 unsigned int num_devices, i, j;
332 char *tmp_str, *s, c;
333 const char **stropts;
334
335 if (parse_driver(opt_drv, &driver_from_opt, NULL)) {
336 /* A driver was specified, report driver-wide options now. */
337 show_drv_detail(driver_from_opt);
338 }
339
340 if (!(devices = device_scan())) {
341 g_critical("No devices found.");
342 return;
343 }
344
345 num_devices = g_slist_length(devices);
346 if (num_devices > 1) {
347 g_critical("%d devices found. Use --scan to show them, "
348 "and select one to show.", num_devices);
349 return;
350 }
351
352 sdi = devices->data;
353 g_slist_free(devices);
354 print_dev_line(sdi);
355
356 driver = sr_dev_inst_driver_get(sdi);
357 channel_groups = sr_dev_inst_channel_groups_get(sdi);
358
359 if (sr_dev_open(sdi) != SR_OK) {
360 g_critical("Failed to open device.");
361 return;
362 }
363
364 /*
365 * Selected channels and channel group may affect which options are
366 * returned, or which values for them.
367 */
368 select_channels(sdi);
369 channel_group = select_channel_group(sdi);
370
371 if (!(opts = sr_dev_options(driver, sdi, channel_group)))
372 /* Driver supports no device instance options. */
373 return;
374
375 if (channel_groups) {
376 printf("Channel groups:\n");
377 for (cgl = channel_groups; cgl; cgl = cgl->next) {
378 cg = cgl->data;
379 printf(" %s: channel%s", cg->name,
380 g_slist_length(cg->channels) > 1 ? "s" : "");
381 for (chl = cg->channels; chl; chl = chl->next) {
382 ch = chl->data;
383 printf(" %s", ch->name);
384 }
385 printf("\n");
386 }
387 }
388
389 printf("Supported configuration options");
390 if (channel_groups) {
391 if (!channel_group)
392 printf(" across all channel groups");
393 else
394 printf(" on channel group %s", channel_group->name);
395 }
396 printf(":\n");
397 for (o = 0; o < opts->len; o++) {
398 key = g_array_index(opts, uint32_t, o);
399 if (!(srci = sr_key_info_get(SR_KEY_CONFIG, key)))
400 continue;
401
402 if (key == SR_CONF_TRIGGER_MATCH) {
403 if (maybe_config_list(driver, sdi, channel_group, key,
404 &gvar_list) != SR_OK) {
405 printf("\n");
406 continue;
407 }
408 int32 = g_variant_get_fixed_array(gvar_list,
409 &num_elements, sizeof(int32_t));
410 printf(" Supported triggers: ");
411 for (i = 0; i < num_elements; i++) {
412 switch (int32[i]) {
413 case SR_TRIGGER_ZERO:
414 c = '0';
415 break;
416 case SR_TRIGGER_ONE:
417 c = '1';
418 break;
419 case SR_TRIGGER_RISING:
420 c = 'r';
421 break;
422 case SR_TRIGGER_FALLING:
423 c = 'f';
424 break;
425 case SR_TRIGGER_EDGE:
426 c = 'e';
427 break;
428 case SR_TRIGGER_OVER:
429 c = 'o';
430 break;
431 case SR_TRIGGER_UNDER:
432 c = 'u';
433 break;
434 default:
435 c = 0;
436 break;
437 }
438 if (c)
439 printf("%c ", c);
440 }
441 printf("\n");
442 g_variant_unref(gvar_list);
443
444 } else if (key == SR_CONF_LIMIT_SAMPLES
445 && (sr_dev_config_capabilities_list(sdi, NULL, key)
446 & SR_CONF_LIST)) {
447 /*
448 * If implemented in config_list(), this denotes the
449 * maximum number of samples a device can send. This
450 * really applies only to logic analyzers, and then
451 * only to those that don't support compression, or
452 * have it turned off by default. The values returned
453 * are the low/high limits.
454 */
455 if (sr_config_list(driver, sdi, channel_group, key,
456 &gvar) == SR_OK) {
457 g_variant_get(gvar, "(tt)", &low, &high);
458 g_variant_unref(gvar);
459 printf(" Maximum number of samples: %"PRIu64"\n", high);
460 }
461
462 } else if (key == SR_CONF_SAMPLERATE) {
463 /* Supported samplerates */
464 printf(" %s", srci->id);
465 if (maybe_config_list(driver, sdi, channel_group, SR_CONF_SAMPLERATE,
466 &gvar_dict) != SR_OK) {
467 printf("\n");
468 continue;
469 }
470 if ((gvar_list = g_variant_lookup_value(gvar_dict,
471 "samplerates", G_VARIANT_TYPE("at")))) {
472 uint64 = g_variant_get_fixed_array(gvar_list,
473 &num_elements, sizeof(uint64_t));
474 printf(" - supported samplerates:\n");
475 for (i = 0; i < num_elements; i++) {
476 if (!(s = sr_samplerate_string(uint64[i])))
477 continue;
478 printf(" %s\n", s);
479 g_free(s);
480 }
481 g_variant_unref(gvar_list);
482 } else if ((gvar_list = g_variant_lookup_value(gvar_dict,
483 "samplerate-steps", G_VARIANT_TYPE("at")))) {
484 uint64 = g_variant_get_fixed_array(gvar_list,
485 &num_elements, sizeof(uint64_t));
486 /* low */
487 if (!(s = sr_samplerate_string(uint64[0])))
488 continue;
489 printf(" (%s", s);
490 g_free(s);
491 /* high */
492 if (!(s = sr_samplerate_string(uint64[1])))
493 continue;
494 printf(" - %s", s);
495 g_free(s);
496 /* step */
497 if (!(s = sr_samplerate_string(uint64[2])))
498 continue;
499 printf(" in steps of %s)\n", s);
500 g_free(s);
501 g_variant_unref(gvar_list);
502 }
503 g_variant_unref(gvar_dict);
504
505 } else if (srci->datatype == SR_T_UINT64) {
506 printf(" %s: ", srci->id);
507 gvar = NULL;
508 if (maybe_config_get(driver, sdi, channel_group, key,
509 &gvar) == SR_OK) {
510 tmp_uint64 = g_variant_get_uint64(gvar);
511 g_variant_unref(gvar);
512 } else
513 tmp_uint64 = 0;
514 if (maybe_config_list(driver, sdi, channel_group,
515 key, &gvar_list) != SR_OK) {
516 if (gvar) {
517 /* Can't list it, but we have a value to show. */
518 printf("%"PRIu64" (current)", tmp_uint64);
519 }
520 printf("\n");
521 continue;
522 }
523 uint64 = g_variant_get_fixed_array(gvar_list,
524 &num_elements, sizeof(uint64_t));
525 printf(" - supported values:\n");
526 for (i = 0; i < num_elements; i++) {
527 printf(" %"PRIu64, uint64[i]);
528 if (gvar && tmp_uint64 == uint64[i])
529 printf(" (current)");
530 printf("\n");
531 }
532 g_variant_unref(gvar_list);
533
534 } else if (srci->datatype == SR_T_STRING) {
535 printf(" %s: ", srci->id);
536 if (maybe_config_get(driver, sdi, channel_group, key,
537 &gvar) == SR_OK) {
538 tmp_str = g_strdup(g_variant_get_string(gvar, NULL));
539 g_variant_unref(gvar);
540 } else
541 tmp_str = NULL;
542
543 if (maybe_config_list(driver, sdi, channel_group, key,
544 &gvar) != SR_OK) {
545 if (tmp_str) {
546 /* Can't list it, but we have a value to show. */
547 printf("%s (current)", tmp_str);
548 }
549 printf("\n");
550 g_free(tmp_str);
551 continue;
552 }
553
554 stropts = g_variant_get_strv(gvar, &num_elements);
555 for (i = 0; i < num_elements; i++) {
556 if (i)
557 printf(", ");
558 printf("%s", stropts[i]);
559 if (tmp_str && !strcmp(tmp_str, stropts[i]))
560 printf(" (current)");
561 }
562 printf("\n");
563 g_free(stropts);
564 g_free(tmp_str);
565 g_variant_unref(gvar);
566
567 } else if (srci->datatype == SR_T_UINT64_RANGE) {
568 printf(" %s: ", srci->id);
569 if (maybe_config_list(driver, sdi, channel_group, key,
570 &gvar_list) != SR_OK) {
571 printf("\n");
572 continue;
573 }
574
575 if (maybe_config_get(driver, sdi, channel_group, key, &gvar) == SR_OK) {
576 g_variant_get(gvar, "(tt)", &cur_low, &cur_high);
577 g_variant_unref(gvar);
578 } else {
579 cur_low = 0;
580 cur_high = 0;
581 }
582
583 num_elements = g_variant_n_children(gvar_list);
584 for (i = 0; i < num_elements; i++) {
585 gvar = g_variant_get_child_value(gvar_list, i);
586 g_variant_get(gvar, "(tt)", &low, &high);
587 g_variant_unref(gvar);
588 if (i)
589 printf(", ");
590 printf("%"PRIu64"-%"PRIu64, low, high);
591 if (low == cur_low && high == cur_high)
592 printf(" (current)");
593 }
594 printf("\n");
595 g_variant_unref(gvar_list);
596
597 } else if (srci->datatype == SR_T_BOOL) {
598 printf(" %s: ", srci->id);
599 if (maybe_config_get(driver, sdi, channel_group, key,
600 &gvar) == SR_OK) {
601 if (g_variant_get_boolean(gvar))
602 printf("on (current), off\n");
603 else
604 printf("on, off (current)\n");
605 g_variant_unref(gvar);
606 } else
607 printf("on, off\n");
608
609 } else if (srci->datatype == SR_T_DOUBLE_RANGE) {
610 printf(" %s: ", srci->id);
611 if (maybe_config_list(driver, sdi, channel_group, key,
612 &gvar_list) != SR_OK) {
613 printf("\n");
614 continue;
615 }
616
617 if (maybe_config_get(driver, sdi, channel_group, key, &gvar) == SR_OK) {
618 g_variant_get(gvar, "(dd)", &dcur_low, &dcur_high);
619 g_variant_unref(gvar);
620 } else {
621 dcur_low = 0;
622 dcur_high = 0;
623 }
624
625 num_elements = g_variant_n_children(gvar_list);
626 for (i = 0; i < num_elements; i++) {
627 gvar = g_variant_get_child_value(gvar_list, i);
628 g_variant_get(gvar, "(dd)", &dlow, &dhigh);
629 g_variant_unref(gvar);
630 if (i)
631 printf(", ");
632 printf("%.1f-%.1f", dlow, dhigh);
633 if (dlow == dcur_low && dhigh == dcur_high)
634 printf(" (current)");
635 }
636 printf("\n");
637 g_variant_unref(gvar_list);
638
639 } else if (srci->datatype == SR_T_FLOAT) {
640 printf(" %s: ", srci->id);
641 if (maybe_config_get(driver, sdi, channel_group, key,
642 &gvar) == SR_OK) {
643 printf("%f\n", g_variant_get_double(gvar));
644 g_variant_unref(gvar);
645 } else
646 printf("\n");
647
648 } else if (srci->datatype == SR_T_RATIONAL_PERIOD
649 || srci->datatype == SR_T_RATIONAL_VOLT) {
650 printf(" %s", srci->id);
651 if (maybe_config_get(driver, sdi, channel_group, key,
652 &gvar) == SR_OK) {
653 g_variant_get(gvar, "(tt)", &cur_p, &cur_q);
654 g_variant_unref(gvar);
655 } else
656 cur_p = cur_q = 0;
657
658 if (maybe_config_list(driver, sdi, channel_group,
659 key, &gvar_list) != SR_OK) {
660 printf("\n");
661 continue;
662 }
663 printf(" - supported values:\n");
664 num_elements = g_variant_n_children(gvar_list);
665 for (i = 0; i < num_elements; i++) {
666 gvar = g_variant_get_child_value(gvar_list, i);
667 g_variant_get(gvar, "(tt)", &p, &q);
668 if (srci->datatype == SR_T_RATIONAL_PERIOD)
669 s = sr_period_string(p, q);
670 else
671 s = sr_voltage_string(p, q);
672 printf(" %s", s);
673 g_free(s);
674 if (p == cur_p && q == cur_q)
675 printf(" (current)");
676 printf("\n");
677 }
678 g_variant_unref(gvar_list);
679
680 } else if (srci->datatype == SR_T_MQ) {
681 printf(" %s: ", srci->id);
682 if (maybe_config_get(driver, sdi, channel_group, key,
683 &gvar) == SR_OK
684 && g_variant_is_of_type(gvar, G_VARIANT_TYPE_TUPLE)
685 && g_variant_n_children(gvar) == 2) {
686 g_variant_get(gvar, "(ut)", &cur_mq, &cur_mqflags);
687 g_variant_unref(gvar);
688 } else
689 cur_mq = cur_mqflags = 0;
690
691 if (maybe_config_list(driver, sdi, channel_group,
692 key, &gvar_list) != SR_OK) {
693 printf("\n");
694 continue;
695 }
696 printf(" - supported measurements:\n");
697 num_elements = g_variant_n_children(gvar_list);
698 for (i = 0; i < num_elements; i++) {
699 printf(" ");
700 gvar = g_variant_get_child_value(gvar_list, i);
701 g_variant_get(gvar, "(ut)", &mq, &mqflags);
702 if ((srmqi = sr_key_info_get(SR_KEY_MQ, mq)))
703 printf("%s", srmqi->id);
704 else
705 printf("%d", mq);
706 for (j = 0, mask = 1; j < 32; j++, mask <<= 1) {
707 if (!(mqflags & mask))
708 continue;
709 if ((srmqfi = sr_key_info_get(SR_KEY_MQFLAGS, mqflags & mask)))
710 printf("/%s", srmqfi->id);
711 else
712 printf("/%" PRIu64, mqflags & mask);
713 }
714 if (mq == cur_mq && mqflags == cur_mqflags)
715 printf(" (current)");
716 printf("\n");
717 }
718 g_variant_unref(gvar_list);
719
720 } else {
721
722 /* Everything else */
723 printf(" %s\n", srci->id);
724 }
725 }
726 g_array_free(opts, TRUE);
727
728 sr_dev_close(sdi);
729
730}
731
732#ifdef HAVE_SRD
733static void show_pd_detail_single(const char *pd)
734{
735 struct srd_decoder *dec;
736 struct srd_decoder_option *o;
737 struct srd_channel *pdch;
738 struct srd_decoder_annotation_row *r;
739 GSList *l, *ll, *ol;
740 int idx;
741 char **pdtokens, **pdtok, *optsep, **ann, **bin, *val, *doc, *str;
742
743 pdtokens = g_strsplit(pd, ",", -1);
744 for (pdtok = pdtokens; *pdtok; pdtok++) {
745 /* Strip options. */
746 if ((optsep = strchr(*pdtok, ':')))
747 *optsep = '\0';
748 if (!(dec = srd_decoder_get_by_id(*pdtok))) {
749 g_critical("Protocol decoder %s not found.", *pdtok);
750 return;
751 }
752 printf("ID: %s\nName: %s\nLong name: %s\nDescription: %s\n",
753 dec->id, dec->name, dec->longname, dec->desc);
754 printf("License: %s\n", dec->license);
755 printf("Possible decoder input IDs:\n");
756 if (dec->inputs) {
757 for (l = dec->inputs; l; l = l->next) {
758 str = l->data;
759 printf("- %s\n", str);
760 }
761 } else {
762 printf("None.\n");
763 }
764 printf("Possible decoder output IDs:\n");
765 if (dec->outputs) {
766 for (l = dec->outputs; l; l = l->next) {
767 str = l->data;
768 printf("- %s\n", str);
769 }
770 } else {
771 printf("None.\n");
772 }
773 printf("Decoder tags:\n");
774 if (dec->tags) {
775 for (l = dec->tags; l; l = l->next) {
776 str = l->data;
777 printf("- %s\n", str);
778 }
779 } else {
780 printf("None.\n");
781 }
782 printf("Annotation classes:\n");
783 if (dec->annotations) {
784 for (l = dec->annotations; l; l = l->next) {
785 ann = l->data;
786 printf("- %s: %s\n", ann[0], ann[1]);
787 }
788 } else {
789 printf("None.\n");
790 }
791 printf("Annotation rows:\n");
792 if (dec->annotation_rows) {
793 for (l = dec->annotation_rows; l; l = l->next) {
794 r = l->data;
795 printf("- %s (%s): ", r->id, r->desc);
796 for (ll = r->ann_classes; ll; ll = ll->next) {
797 idx = GPOINTER_TO_INT(ll->data);
798 ann = g_slist_nth_data(dec->annotations, idx);
799 printf("%s", ann[0]);
800 if (ll->next)
801 printf(", ");
802 }
803 printf("\n");
804 }
805 } else {
806 printf("None.\n");
807 }
808 printf("Binary classes:\n");
809 if (dec->binary) {
810 for (l = dec->binary; l; l = l->next) {
811 bin = l->data;
812 printf("- %s: %s\n", bin[0], bin[1]);
813 }
814 } else {
815 printf("None.\n");
816 }
817 printf("Required channels:\n");
818 if (dec->channels) {
819 for (l = dec->channels; l; l = l->next) {
820 pdch = l->data;
821 printf("- %s (%s): %s\n",
822 pdch->id, pdch->name, pdch->desc);
823 }
824 } else {
825 printf("None.\n");
826 }
827 printf("Optional channels:\n");
828 if (dec->opt_channels) {
829 for (l = dec->opt_channels; l; l = l->next) {
830 pdch = l->data;
831 printf("- %s (%s): %s\n",
832 pdch->id, pdch->name, pdch->desc);
833 }
834 } else {
835 printf("None.\n");
836 }
837 printf("Options:\n");
838 if (dec->options) {
839 for (l = dec->options; l; l = l->next) {
840 o = l->data;
841 printf("- %s: %s (", o->id, o->desc);
842 for (ol = o->values; ol; ol = ol->next) {
843 val = g_variant_print(ol->data, FALSE);
844 printf("%s, ", val);
845 g_free(val);
846 }
847 val = g_variant_print(o->def, FALSE);
848 printf("default %s)\n", val);
849 g_free(val);
850 }
851 } else {
852 printf("None.\n");
853 }
854 if ((doc = srd_decoder_doc_get(dec))) {
855 printf("Documentation:\n%s\n",
856 doc[0] == '\n' ? doc + 1 : doc);
857 g_free(doc);
858 }
859 }
860
861 g_strfreev(pdtokens);
862}
863
864void show_pd_detail(void)
865{
866 for (int i = 0; opt_pds[i]; i++)
867 show_pd_detail_single(opt_pds[i]);
868}
869#endif
870
871void show_input(void)
872{
873 const struct sr_input_module *imod;
874 const struct sr_option **opts;
875 GSList *l;
876 int i;
877 char *s, **tok;
878
879 tok = g_strsplit(opt_input_format, ":", 0);
880 if (!tok[0] || !(imod = sr_input_find(tok[0])))
881 g_critical("Input module '%s' not found.", opt_input_format);
882
883 printf("ID: %s\nName: %s\n", sr_input_id_get(imod),
884 sr_input_name_get(imod));
885 printf("Description: %s\n", sr_input_description_get(imod));
886 if ((opts = sr_input_options_get(imod))) {
887 printf("Options:\n");
888 for (i = 0; opts[i]; i++) {
889 printf(" %s: %s", opts[i]->id, opts[i]->desc);
890 if (opts[i]->def) {
891 s = g_variant_print(opts[i]->def, FALSE);
892 printf(" (default %s", s);
893 g_free(s);
894 if (opts[i]->values) {
895 printf(", possible values ");
896 for (l = opts[i]->values; l; l = l->next) {
897 s = g_variant_print((GVariant *)l->data, FALSE);
898 printf("%s%s", s, l->next ? ", " : "");
899 g_free(s);
900 }
901 }
902 printf(")");
903 }
904 printf("\n");
905 }
906 sr_input_options_free(opts);
907 }
908 g_strfreev(tok);
909}
910
911void show_output(void)
912{
913 const struct sr_output_module *omod;
914 const struct sr_option **opts;
915 GSList *l;
916 int i;
917 char *s, **tok;
918
919 tok = g_strsplit(opt_output_format, ":", 0);
920 if (!tok[0] || !(omod = sr_output_find(tok[0])))
921 g_critical("Output module '%s' not found.", opt_output_format);
922
923 printf("ID: %s\nName: %s\n", sr_output_id_get(omod),
924 sr_output_name_get(omod));
925 printf("Description: %s\n", sr_output_description_get(omod));
926 if ((opts = sr_output_options_get(omod))) {
927 printf("Options:\n");
928 for (i = 0; opts[i]; i++) {
929 printf(" %s: %s", opts[i]->id, opts[i]->desc);
930 if (opts[i]->def) {
931 s = g_variant_print(opts[i]->def, FALSE);
932 printf(" (default %s", s);
933 g_free(s);
934 if (opts[i]->values) {
935 printf(", possible values ");
936 for (l = opts[i]->values; l; l = l->next) {
937 s = g_variant_print((GVariant *)l->data, FALSE);
938 printf("%s%s", s, l->next ? ", " : "");
939 g_free(s);
940 }
941 }
942 printf(")");
943 }
944 printf("\n");
945 }
946 sr_output_options_free(opts);
947 }
948 g_strfreev(tok);
949}
950
951void show_transform(void)
952{
953 const struct sr_transform_module *tmod;
954 const struct sr_option **opts;
955 GSList *l;
956 int i;
957 char *s, **tok;
958
959 tok = g_strsplit(opt_transform_module, ":", 0);
960 if (!tok[0] || !(tmod = sr_transform_find(tok[0])))
961 g_critical("Transform module '%s' not found.", opt_transform_module);
962
963 printf("ID: %s\nName: %s\n", sr_transform_id_get(tmod),
964 sr_transform_name_get(tmod));
965 printf("Description: %s\n", sr_transform_description_get(tmod));
966 if ((opts = sr_transform_options_get(tmod))) {
967 printf("Options:\n");
968 for (i = 0; opts[i]; i++) {
969 printf(" %s: %s", opts[i]->id, opts[i]->desc);
970 if (opts[i]->def) {
971 s = g_variant_print(opts[i]->def, FALSE);
972 printf(" (default %s", s);
973 g_free(s);
974 if (opts[i]->values) {
975 printf(", possible values ");
976 for (l = opts[i]->values; l; l = l->next) {
977 s = g_variant_print((GVariant *)l->data, FALSE);
978 printf("%s%s", s, l->next ? ", " : "");
979 g_free(s);
980 }
981 }
982 printf(")");
983 }
984 printf("\n");
985 }
986 sr_transform_options_free(opts);
987 }
988 g_strfreev(tok);
989}