]> sigrok.org Git - libsigrokdecode.git/blame_incremental - decoder.c
Add initial OUTPUT_LOGIC support.
[libsigrokdecode.git] / decoder.c
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1/*
2 * This file is part of the libsigrokdecode project.
3 *
4 * Copyright (C) 2010 Uwe Hermann <uwe@hermann-uwe.de>
5 * Copyright (C) 2012 Bert Vermeulen <bert@biot.com>
6 *
7 * This program is free software: you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation, either version 3 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with this program. If not, see <http://www.gnu.org/licenses/>.
19 */
20
21#include <config.h>
22#include "libsigrokdecode-internal.h" /* First, so we avoid a _POSIX_C_SOURCE warning. */
23#include "libsigrokdecode.h"
24#include <glib.h>
25
26/**
27 * @file
28 *
29 * Listing, loading, unloading, and handling protocol decoders.
30 */
31
32/**
33 * @defgroup grp_decoder Protocol decoders
34 *
35 * Handling protocol decoders.
36 *
37 * @{
38 */
39
40/** @cond PRIVATE */
41
42/* The list of loaded protocol decoders. */
43static GSList *pd_list = NULL;
44
45/* srd.c */
46extern SRD_PRIV GSList *searchpaths;
47
48/* session.c */
49extern SRD_PRIV GSList *sessions;
50extern SRD_PRIV int max_session_id;
51
52/* module_sigrokdecode.c */
53extern SRD_PRIV PyObject *mod_sigrokdecode;
54
55/** @endcond */
56
57static gboolean srd_check_init(void)
58{
59 if (max_session_id < 0) {
60 srd_err("Library is not initialized.");
61 return FALSE;
62 } else
63 return TRUE;
64}
65
66/**
67 * Returns the list of loaded protocol decoders.
68 *
69 * This is a GSList of pointers to struct srd_decoder items.
70 *
71 * @return List of decoders, NULL if none are supported or loaded.
72 *
73 * @since 0.2.0
74 */
75SRD_API const GSList *srd_decoder_list(void)
76{
77 return pd_list;
78}
79
80/**
81 * Get the decoder with the specified ID.
82 *
83 * @param id The ID string of the decoder to return.
84 *
85 * @return The decoder with the specified ID, or NULL if not found.
86 *
87 * @since 0.1.0
88 */
89SRD_API struct srd_decoder *srd_decoder_get_by_id(const char *id)
90{
91 GSList *l;
92 struct srd_decoder *dec;
93
94 for (l = pd_list; l; l = l->next) {
95 dec = l->data;
96 if (!strcmp(dec->id, id))
97 return dec;
98 }
99
100 return NULL;
101}
102
103static void channel_free(void *data)
104{
105 struct srd_channel *ch = data;
106
107 if (!ch)
108 return;
109
110 g_free(ch->desc);
111 g_free(ch->name);
112 g_free(ch->id);
113 g_free(ch);
114}
115
116static void variant_free(void *data)
117{
118 GVariant *var = data;
119
120 if (!var)
121 return;
122
123 g_variant_unref(var);
124}
125
126static void annotation_row_free(void *data)
127{
128 struct srd_decoder_annotation_row *row = data;
129
130 if (!row)
131 return;
132
133 g_slist_free(row->ann_classes);
134 g_free(row->desc);
135 g_free(row->id);
136 g_free(row);
137}
138
139static void logic_output_channel_free(void *data)
140{
141 struct srd_decoder_logic_output_channel *logic_out_ch = data;
142
143 if (!logic_out_ch)
144 return;
145
146 g_free(logic_out_ch->desc);
147 g_free(logic_out_ch->id);
148 g_free(logic_out_ch);
149}
150
151static void decoder_option_free(void *data)
152{
153 struct srd_decoder_option *opt = data;
154
155 if (!opt)
156 return;
157
158 g_slist_free_full(opt->values, &variant_free);
159 variant_free(opt->def);
160 g_free(opt->desc);
161 g_free(opt->id);
162 g_free(opt);
163}
164
165static void decoder_free(struct srd_decoder *dec)
166{
167 PyGILState_STATE gstate;
168
169 if (!dec)
170 return;
171
172 gstate = PyGILState_Ensure();
173 Py_XDECREF(dec->py_dec);
174 Py_XDECREF(dec->py_mod);
175 PyGILState_Release(gstate);
176
177 g_slist_free_full(dec->options, &decoder_option_free);
178 g_slist_free_full(dec->binary, (GDestroyNotify)&g_strfreev);
179 g_slist_free_full(dec->annotation_rows, &annotation_row_free);
180 g_slist_free_full(dec->annotations, (GDestroyNotify)&g_strfreev);
181 g_slist_free_full(dec->opt_channels, &channel_free);
182 g_slist_free_full(dec->channels, &channel_free);
183
184 g_slist_free_full(dec->outputs, g_free);
185 g_slist_free_full(dec->inputs, g_free);
186 g_slist_free_full(dec->tags, g_free);
187 g_free(dec->license);
188 g_free(dec->desc);
189 g_free(dec->longname);
190 g_free(dec->name);
191 g_free(dec->id);
192
193 g_free(dec);
194}
195
196static int get_channels(const struct srd_decoder *d, const char *attr,
197 GSList **out_pdchl, int offset)
198{
199 PyObject *py_channellist, *py_entry;
200 struct srd_channel *pdch;
201 GSList *pdchl;
202 ssize_t i;
203 PyGILState_STATE gstate;
204
205 gstate = PyGILState_Ensure();
206
207 if (!PyObject_HasAttrString(d->py_dec, attr)) {
208 /* No channels of this type specified. */
209 PyGILState_Release(gstate);
210 return SRD_OK;
211 }
212
213 pdchl = NULL;
214
215 py_channellist = PyObject_GetAttrString(d->py_dec, attr);
216 if (!py_channellist)
217 goto except_out;
218
219 if (!PyTuple_Check(py_channellist)) {
220 srd_err("Protocol decoder %s %s attribute is not a tuple.",
221 d->name, attr);
222 goto err_out;
223 }
224
225 for (i = PyTuple_Size(py_channellist) - 1; i >= 0; i--) {
226 py_entry = PyTuple_GetItem(py_channellist, i);
227 if (!py_entry)
228 goto except_out;
229
230 if (!PyDict_Check(py_entry)) {
231 srd_err("Protocol decoder %s %s attribute is not "
232 "a list of dict elements.", d->name, attr);
233 goto err_out;
234 }
235 pdch = g_malloc(sizeof(struct srd_channel));
236 /* Add to list right away so it doesn't get lost. */
237 pdchl = g_slist_prepend(pdchl, pdch);
238
239 if (py_dictitem_as_str(py_entry, "id", &pdch->id) != SRD_OK)
240 goto err_out;
241 if (py_dictitem_as_str(py_entry, "name", &pdch->name) != SRD_OK)
242 goto err_out;
243 if (py_dictitem_as_str(py_entry, "desc", &pdch->desc) != SRD_OK)
244 goto err_out;
245
246 pdch->order = offset + i;
247 }
248
249 Py_DECREF(py_channellist);
250 *out_pdchl = pdchl;
251
252 PyGILState_Release(gstate);
253
254 return SRD_OK;
255
256except_out:
257 srd_exception_catch("Failed to get %s list of %s decoder",
258 attr, d->name);
259
260err_out:
261 g_slist_free_full(pdchl, &channel_free);
262 Py_XDECREF(py_channellist);
263 PyGILState_Release(gstate);
264
265 return SRD_ERR_PYTHON;
266}
267
268static int get_options(struct srd_decoder *d)
269{
270 PyObject *py_opts, *py_opt, *py_str, *py_values, *py_default, *py_item;
271 GSList *options;
272 struct srd_decoder_option *o;
273 GVariant *gvar;
274 ssize_t opt, i;
275 PyGILState_STATE gstate;
276
277 gstate = PyGILState_Ensure();
278
279 if (!PyObject_HasAttrString(d->py_dec, "options")) {
280 /* No options, that's fine. */
281 PyGILState_Release(gstate);
282 return SRD_OK;
283 }
284
285 options = NULL;
286
287 /* If present, options must be a tuple. */
288 py_opts = PyObject_GetAttrString(d->py_dec, "options");
289 if (!py_opts)
290 goto except_out;
291
292 if (!PyTuple_Check(py_opts)) {
293 srd_err("Protocol decoder %s: options attribute is not "
294 "a tuple.", d->id);
295 goto err_out;
296 }
297
298 for (opt = PyTuple_Size(py_opts) - 1; opt >= 0; opt--) {
299 py_opt = PyTuple_GetItem(py_opts, opt);
300 if (!py_opt)
301 goto except_out;
302
303 if (!PyDict_Check(py_opt)) {
304 srd_err("Protocol decoder %s options: each option "
305 "must consist of a dictionary.", d->name);
306 goto err_out;
307 }
308
309 o = g_malloc0(sizeof(struct srd_decoder_option));
310 /* Add to list right away so it doesn't get lost. */
311 options = g_slist_prepend(options, o);
312
313 py_str = PyDict_GetItemString(py_opt, "id");
314 if (!py_str) {
315 srd_err("Protocol decoder %s option %zd has no ID.",
316 d->name, opt);
317 goto err_out;
318 }
319 if (py_str_as_str(py_str, &o->id) != SRD_OK)
320 goto err_out;
321
322 py_str = PyDict_GetItemString(py_opt, "desc");
323 if (py_str) {
324 if (py_str_as_str(py_str, &o->desc) != SRD_OK)
325 goto err_out;
326 }
327
328 py_default = PyDict_GetItemString(py_opt, "default");
329 if (py_default) {
330 gvar = py_obj_to_variant(py_default);
331 if (!gvar) {
332 srd_err("Protocol decoder %s option 'default' has "
333 "invalid default value.", d->name);
334 goto err_out;
335 }
336 o->def = g_variant_ref_sink(gvar);
337 }
338
339 py_values = PyDict_GetItemString(py_opt, "values");
340 if (py_values) {
341 /*
342 * A default is required if a list of values is
343 * given, since it's used to verify their type.
344 */
345 if (!o->def) {
346 srd_err("No default for option '%s'.", o->id);
347 goto err_out;
348 }
349 if (!PyTuple_Check(py_values)) {
350 srd_err("Option '%s' values should be a tuple.", o->id);
351 goto err_out;
352 }
353
354 for (i = PyTuple_Size(py_values) - 1; i >= 0; i--) {
355 py_item = PyTuple_GetItem(py_values, i);
356 if (!py_item)
357 goto except_out;
358
359 if (py_default && (Py_TYPE(py_default) != Py_TYPE(py_item))) {
360 srd_err("All values for option '%s' must be "
361 "of the same type as the default.",
362 o->id);
363 goto err_out;
364 }
365 gvar = py_obj_to_variant(py_item);
366 if (!gvar) {
367 srd_err("Protocol decoder %s option 'values' "
368 "contains invalid value.", d->name);
369 goto err_out;
370 }
371 o->values = g_slist_prepend(o->values,
372 g_variant_ref_sink(gvar));
373 }
374 }
375 }
376 d->options = options;
377 Py_DECREF(py_opts);
378 PyGILState_Release(gstate);
379
380 return SRD_OK;
381
382except_out:
383 srd_exception_catch("Failed to get %s decoder options", d->name);
384
385err_out:
386 g_slist_free_full(options, &decoder_option_free);
387 Py_XDECREF(py_opts);
388 PyGILState_Release(gstate);
389
390 return SRD_ERR_PYTHON;
391}
392
393/* Convert annotation class attribute to GSList of char **. */
394static int get_annotations(struct srd_decoder *dec)
395{
396 PyObject *py_annlist, *py_ann;
397 GSList *annotations;
398 char **annpair;
399 ssize_t i;
400 PyGILState_STATE gstate;
401
402 gstate = PyGILState_Ensure();
403
404 if (!PyObject_HasAttrString(dec->py_dec, "annotations")) {
405 PyGILState_Release(gstate);
406 return SRD_OK;
407 }
408
409 annotations = NULL;
410
411 py_annlist = PyObject_GetAttrString(dec->py_dec, "annotations");
412 if (!py_annlist)
413 goto except_out;
414
415 if (!PyTuple_Check(py_annlist)) {
416 srd_err("Protocol decoder %s annotations should "
417 "be a tuple.", dec->name);
418 goto err_out;
419 }
420
421 for (i = PyTuple_Size(py_annlist) - 1; i >= 0; i--) {
422 py_ann = PyTuple_GetItem(py_annlist, i);
423 if (!py_ann)
424 goto except_out;
425
426 if (!PyTuple_Check(py_ann) || PyTuple_Size(py_ann) != 2) {
427 srd_err("Protocol decoder %s annotation %zd should "
428 "be a tuple with two elements.",
429 dec->name, i + 1);
430 goto err_out;
431 }
432 if (py_strseq_to_char(py_ann, &annpair) != SRD_OK)
433 goto err_out;
434
435 annotations = g_slist_prepend(annotations, annpair);
436 }
437 dec->annotations = annotations;
438 Py_DECREF(py_annlist);
439 PyGILState_Release(gstate);
440
441 return SRD_OK;
442
443except_out:
444 srd_exception_catch("Failed to get %s decoder annotations", dec->name);
445
446err_out:
447 g_slist_free_full(annotations, (GDestroyNotify)&g_strfreev);
448 Py_XDECREF(py_annlist);
449 PyGILState_Release(gstate);
450
451 return SRD_ERR_PYTHON;
452}
453
454/* Convert annotation_rows to GSList of 'struct srd_decoder_annotation_row'. */
455static int get_annotation_rows(struct srd_decoder *dec)
456{
457 PyObject *py_ann_rows, *py_ann_row, *py_ann_classes, *py_item;
458 GSList *annotation_rows;
459 struct srd_decoder_annotation_row *ann_row;
460 ssize_t i, k;
461 size_t class_idx;
462 PyGILState_STATE gstate;
463
464 gstate = PyGILState_Ensure();
465
466 if (!PyObject_HasAttrString(dec->py_dec, "annotation_rows")) {
467 PyGILState_Release(gstate);
468 return SRD_OK;
469 }
470
471 annotation_rows = NULL;
472
473 py_ann_rows = PyObject_GetAttrString(dec->py_dec, "annotation_rows");
474 if (!py_ann_rows)
475 goto except_out;
476
477 if (!PyTuple_Check(py_ann_rows)) {
478 srd_err("Protocol decoder %s annotation_rows "
479 "must be a tuple.", dec->name);
480 goto err_out;
481 }
482
483 for (i = PyTuple_Size(py_ann_rows) - 1; i >= 0; i--) {
484 py_ann_row = PyTuple_GetItem(py_ann_rows, i);
485 if (!py_ann_row)
486 goto except_out;
487
488 if (!PyTuple_Check(py_ann_row) || PyTuple_Size(py_ann_row) != 3) {
489 srd_err("Protocol decoder %s annotation_rows "
490 "must contain only tuples of 3 elements.",
491 dec->name);
492 goto err_out;
493 }
494 ann_row = g_malloc0(sizeof(struct srd_decoder_annotation_row));
495 /* Add to list right away so it doesn't get lost. */
496 annotation_rows = g_slist_prepend(annotation_rows, ann_row);
497
498 py_item = PyTuple_GetItem(py_ann_row, 0);
499 if (!py_item)
500 goto except_out;
501 if (py_str_as_str(py_item, &ann_row->id) != SRD_OK)
502 goto err_out;
503
504 py_item = PyTuple_GetItem(py_ann_row, 1);
505 if (!py_item)
506 goto except_out;
507 if (py_str_as_str(py_item, &ann_row->desc) != SRD_OK)
508 goto err_out;
509
510 py_ann_classes = PyTuple_GetItem(py_ann_row, 2);
511 if (!py_ann_classes)
512 goto except_out;
513
514 if (!PyTuple_Check(py_ann_classes)) {
515 srd_err("Protocol decoder %s annotation_rows tuples "
516 "must have a tuple of numbers as 3rd element.",
517 dec->name);
518 goto err_out;
519 }
520
521 for (k = PyTuple_Size(py_ann_classes) - 1; k >= 0; k--) {
522 py_item = PyTuple_GetItem(py_ann_classes, k);
523 if (!py_item)
524 goto except_out;
525
526 if (!PyLong_Check(py_item)) {
527 srd_err("Protocol decoder %s annotation row "
528 "class tuple must only contain numbers.",
529 dec->name);
530 goto err_out;
531 }
532 class_idx = PyLong_AsSize_t(py_item);
533 if (PyErr_Occurred())
534 goto except_out;
535
536 ann_row->ann_classes = g_slist_prepend(ann_row->ann_classes,
537 GSIZE_TO_POINTER(class_idx));
538 }
539 }
540 dec->annotation_rows = annotation_rows;
541 Py_DECREF(py_ann_rows);
542 PyGILState_Release(gstate);
543
544 return SRD_OK;
545
546except_out:
547 srd_exception_catch("Failed to get %s decoder annotation rows",
548 dec->name);
549
550err_out:
551 g_slist_free_full(annotation_rows, &annotation_row_free);
552 Py_XDECREF(py_ann_rows);
553 PyGILState_Release(gstate);
554
555 return SRD_ERR_PYTHON;
556}
557
558/* Convert binary classes to GSList of char **. */
559static int get_binary_classes(struct srd_decoder *dec)
560{
561 PyObject *py_bin_classes, *py_bin_class;
562 GSList *bin_classes;
563 char **bin;
564 ssize_t i;
565 PyGILState_STATE gstate;
566
567 gstate = PyGILState_Ensure();
568
569 if (!PyObject_HasAttrString(dec->py_dec, "binary")) {
570 PyGILState_Release(gstate);
571 return SRD_OK;
572 }
573
574 bin_classes = NULL;
575
576 py_bin_classes = PyObject_GetAttrString(dec->py_dec, "binary");
577 if (!py_bin_classes)
578 goto except_out;
579
580 if (!PyTuple_Check(py_bin_classes)) {
581 srd_err("Protocol decoder %s binary classes should "
582 "be a tuple.", dec->name);
583 goto err_out;
584 }
585
586 for (i = PyTuple_Size(py_bin_classes) - 1; i >= 0; i--) {
587 py_bin_class = PyTuple_GetItem(py_bin_classes, i);
588 if (!py_bin_class)
589 goto except_out;
590
591 if (!PyTuple_Check(py_bin_class)
592 || PyTuple_Size(py_bin_class) != 2) {
593 srd_err("Protocol decoder %s binary classes should "
594 "consist only of tuples of 2 elements.",
595 dec->name);
596 goto err_out;
597 }
598 if (py_strseq_to_char(py_bin_class, &bin) != SRD_OK)
599 goto err_out;
600
601 bin_classes = g_slist_prepend(bin_classes, bin);
602 }
603 dec->binary = bin_classes;
604 Py_DECREF(py_bin_classes);
605 PyGILState_Release(gstate);
606
607 return SRD_OK;
608
609except_out:
610 srd_exception_catch("Failed to get %s decoder binary classes",
611 dec->name);
612
613err_out:
614 g_slist_free_full(bin_classes, (GDestroyNotify)&g_strfreev);
615 Py_XDECREF(py_bin_classes);
616 PyGILState_Release(gstate);
617
618 return SRD_ERR_PYTHON;
619}
620
621/* Convert logic_output_channels to GSList of 'struct srd_decoder_logic_output_channel'. */
622static int get_logic_output_channels(struct srd_decoder *dec)
623{
624 PyObject *py_logic_out_chs, *py_logic_out_ch, *py_samplerate, *py_item;
625 GSList *logic_out_chs;
626 struct srd_decoder_logic_output_channel *logic_out_ch;
627 ssize_t i;
628 PyGILState_STATE gstate;
629
630 gstate = PyGILState_Ensure();
631
632 if (!PyObject_HasAttrString(dec->py_dec, "logic_output_channels")) {
633 PyGILState_Release(gstate);
634 return SRD_OK;
635 }
636
637 logic_out_chs = NULL;
638
639 py_logic_out_chs = PyObject_GetAttrString(dec->py_dec, "logic_output_channels");
640 if (!py_logic_out_chs)
641 goto except_out;
642
643 if (!PyTuple_Check(py_logic_out_chs)) {
644 srd_err("Protocol decoder %s logic_output_channels "
645 "must be a tuple.", dec->name);
646 goto err_out;
647 }
648
649 for (i = PyTuple_Size(py_logic_out_chs) - 1; i >= 0; i--) {
650 py_logic_out_ch = PyTuple_GetItem(py_logic_out_chs, i);
651 if (!py_logic_out_ch)
652 goto except_out;
653
654 if (!PyTuple_Check(py_logic_out_ch) || PyTuple_Size(py_logic_out_ch) != 3) {
655 srd_err("Protocol decoder %s logic_output_channels "
656 "must contain only tuples of 3 elements.",
657 dec->name);
658 goto err_out;
659 }
660 logic_out_ch = g_malloc0(sizeof(*logic_out_ch));
661 /* Add to list right away so it doesn't get lost. */
662 logic_out_chs = g_slist_prepend(logic_out_chs, logic_out_ch);
663
664 py_item = PyTuple_GetItem(py_logic_out_ch, 0);
665 if (!py_item)
666 goto except_out;
667 if (py_str_as_str(py_item, &logic_out_ch->id) != SRD_OK)
668 goto err_out;
669
670 py_item = PyTuple_GetItem(py_logic_out_ch, 1);
671 if (!py_item)
672 goto except_out;
673 if (py_str_as_str(py_item, &logic_out_ch->desc) != SRD_OK)
674 goto err_out;
675
676 py_samplerate = PyTuple_GetItem(py_logic_out_ch, 2);
677 if (!py_samplerate)
678 goto except_out;
679
680 if (!PyLong_Check(py_samplerate)) {
681 srd_err("Protocol decoder %s logic_output_channels tuples "
682 "must have a number as 3rd element.",
683 dec->name);
684 goto err_out;
685 }
686
687 logic_out_ch->samplerate = PyLong_AsUnsignedLongLong(py_samplerate);
688 }
689 dec->logic_output_channels = logic_out_chs;
690 Py_DECREF(py_logic_out_chs);
691 PyGILState_Release(gstate);
692
693 return SRD_OK;
694
695except_out:
696 srd_exception_catch("Failed to get %s decoder logic output channels",
697 dec->name);
698
699err_out:
700 g_slist_free_full(logic_out_chs, &logic_output_channel_free);
701 Py_XDECREF(py_logic_out_chs);
702 PyGILState_Release(gstate);
703
704 return SRD_ERR_PYTHON;
705}
706
707/* Check whether the Decoder class defines the named method. */
708static int check_method(PyObject *py_dec, const char *mod_name,
709 const char *method_name)
710{
711 PyObject *py_method;
712 int is_callable;
713 PyGILState_STATE gstate;
714
715 gstate = PyGILState_Ensure();
716
717 py_method = PyObject_GetAttrString(py_dec, method_name);
718 if (!py_method) {
719 srd_exception_catch("Protocol decoder %s Decoder class "
720 "has no %s() method", mod_name, method_name);
721 PyGILState_Release(gstate);
722 return SRD_ERR_PYTHON;
723 }
724
725 is_callable = PyCallable_Check(py_method);
726 Py_DECREF(py_method);
727
728 PyGILState_Release(gstate);
729
730 if (!is_callable) {
731 srd_err("Protocol decoder %s Decoder class attribute '%s' "
732 "is not a method.", mod_name, method_name);
733 return SRD_ERR_PYTHON;
734 }
735
736 return SRD_OK;
737}
738
739/**
740 * Get the API version of the specified decoder.
741 *
742 * @param d The decoder to use. Must not be NULL.
743 *
744 * @return The API version of the decoder, or 0 upon errors.
745 *
746 * @private
747 */
748SRD_PRIV long srd_decoder_apiver(const struct srd_decoder *d)
749{
750 PyObject *py_apiver;
751 long apiver;
752 PyGILState_STATE gstate;
753
754 if (!d)
755 return 0;
756
757 gstate = PyGILState_Ensure();
758
759 py_apiver = PyObject_GetAttrString(d->py_dec, "api_version");
760 apiver = (py_apiver && PyLong_Check(py_apiver))
761 ? PyLong_AsLong(py_apiver) : 0;
762 Py_XDECREF(py_apiver);
763
764 PyGILState_Release(gstate);
765
766 return apiver;
767}
768
769static gboolean contains_duplicates(GSList *list)
770{
771 for (GSList *l1 = list; l1; l1 = l1->next) {
772 for (GSList *l2 = l1->next; l2; l2 = l2->next)
773 if (!strcmp(l1->data, l2->data))
774 return TRUE;
775 }
776
777 return FALSE;
778}
779
780static gboolean contains_duplicate_ids(GSList *list1, GSList *list2)
781{
782 for (GSList *l1 = list1; l1; l1 = l1->next) {
783 unsigned int cnt = 0;
784 const char **s1 = l1->data;
785 for (GSList *l2 = list2; l2; l2 = l2->next) {
786 const char **s2 = l2->data;
787 if (!strcmp(s1[0], s2[0]))
788 cnt++;
789 if ((list1 == list2) && cnt > 1)
790 return TRUE;
791 if ((list1 != list2) && cnt > 0)
792 return TRUE;
793 }
794 }
795
796 return FALSE;
797}
798
799static gboolean contains_duplicate_row_ids(GSList *list1, GSList *list2)
800{
801 for (GSList *l1 = list1; l1; l1 = l1->next) {
802 unsigned int cnt = 0;
803 const struct srd_decoder_annotation_row *r1 = l1->data;
804 for (GSList *l2 = list2; l2; l2 = l2->next) {
805 const struct srd_decoder_annotation_row *r2 = l2->data;
806 if (!strcmp(r1->id, r2->id))
807 cnt++;
808 if (cnt > 1)
809 return TRUE;
810 }
811 }
812
813 return FALSE;
814}
815
816/**
817 * Load a protocol decoder module into the embedded Python interpreter.
818 *
819 * @param module_name The module name to be loaded.
820 *
821 * @return SRD_OK upon success, a (negative) error code otherwise.
822 *
823 * @since 0.1.0
824 */
825SRD_API int srd_decoder_load(const char *module_name)
826{
827 PyObject *py_basedec;
828 struct srd_decoder *d;
829 long apiver;
830 int is_subclass;
831 const char *fail_txt;
832 PyGILState_STATE gstate;
833
834 if (!srd_check_init())
835 return SRD_ERR;
836
837 if (!module_name)
838 return SRD_ERR_ARG;
839
840 gstate = PyGILState_Ensure();
841
842 if (PyDict_GetItemString(PyImport_GetModuleDict(), module_name)) {
843 /* Module was already imported. */
844 PyGILState_Release(gstate);
845 return SRD_OK;
846 }
847
848 d = g_malloc0(sizeof(struct srd_decoder));
849 fail_txt = NULL;
850
851 d->py_mod = py_import_by_name(module_name);
852 if (!d->py_mod) {
853 fail_txt = "import by name failed";
854 goto except_out;
855 }
856
857 if (!mod_sigrokdecode) {
858 srd_err("sigrokdecode module not loaded.");
859 fail_txt = "sigrokdecode(3) not loaded";
860 goto err_out;
861 }
862
863 /* Get the 'Decoder' class as Python object. */
864 d->py_dec = PyObject_GetAttrString(d->py_mod, "Decoder");
865 if (!d->py_dec) {
866 fail_txt = "no 'Decoder' attribute in imported module";
867 goto except_out;
868 }
869
870 py_basedec = PyObject_GetAttrString(mod_sigrokdecode, "Decoder");
871 if (!py_basedec) {
872 fail_txt = "no 'Decoder' attribute in sigrokdecode(3)";
873 goto except_out;
874 }
875
876 is_subclass = PyObject_IsSubclass(d->py_dec, py_basedec);
877 Py_DECREF(py_basedec);
878
879 if (!is_subclass) {
880 srd_err("Decoder class in protocol decoder module %s is not "
881 "a subclass of sigrokdecode.Decoder.", module_name);
882 fail_txt = "not a subclass of sigrokdecode.Decoder";
883 goto err_out;
884 }
885
886 /*
887 * Check that this decoder has the correct PD API version.
888 * PDs of different API versions are incompatible and cannot work.
889 */
890 apiver = srd_decoder_apiver(d);
891 if (apiver != 3) {
892 srd_exception_catch("Only PD API version 3 is supported, "
893 "decoder %s has version %ld", module_name, apiver);
894 fail_txt = "API version mismatch";
895 goto err_out;
896 }
897
898 /* Check Decoder class for required methods. */
899
900 if (check_method(d->py_dec, module_name, "reset") != SRD_OK) {
901 fail_txt = "no 'reset()' method";
902 goto err_out;
903 }
904
905 if (check_method(d->py_dec, module_name, "start") != SRD_OK) {
906 fail_txt = "no 'start()' method";
907 goto err_out;
908 }
909
910 if (check_method(d->py_dec, module_name, "decode") != SRD_OK) {
911 fail_txt = "no 'decode()' method";
912 goto err_out;
913 }
914
915 /* Store required fields in newly allocated strings. */
916 if (py_attr_as_str(d->py_dec, "id", &(d->id)) != SRD_OK) {
917 fail_txt = "no 'id' attribute";
918 goto err_out;
919 }
920
921 if (py_attr_as_str(d->py_dec, "name", &(d->name)) != SRD_OK) {
922 fail_txt = "no 'name' attribute";
923 goto err_out;
924 }
925
926 if (py_attr_as_str(d->py_dec, "longname", &(d->longname)) != SRD_OK) {
927 fail_txt = "no 'longname' attribute";
928 goto err_out;
929 }
930
931 if (py_attr_as_str(d->py_dec, "desc", &(d->desc)) != SRD_OK) {
932 fail_txt = "no 'desc' attribute";
933 goto err_out;
934 }
935
936 if (py_attr_as_str(d->py_dec, "license", &(d->license)) != SRD_OK) {
937 fail_txt = "no 'license' attribute";
938 goto err_out;
939 }
940
941 if (py_attr_as_strlist(d->py_dec, "inputs", &(d->inputs)) != SRD_OK) {
942 fail_txt = "missing or malformed 'inputs' attribute";
943 goto err_out;
944 }
945
946 if (py_attr_as_strlist(d->py_dec, "outputs", &(d->outputs)) != SRD_OK) {
947 fail_txt = "missing or malformed 'outputs' attribute";
948 goto err_out;
949 }
950
951 if (py_attr_as_strlist(d->py_dec, "tags", &(d->tags)) != SRD_OK) {
952 fail_txt = "missing or malformed 'tags' attribute";
953 goto err_out;
954 }
955
956 /* All options and their default values. */
957 if (get_options(d) != SRD_OK) {
958 fail_txt = "cannot get options";
959 goto err_out;
960 }
961
962 /* Check and import required channels. */
963 if (get_channels(d, "channels", &d->channels, 0) != SRD_OK) {
964 fail_txt = "cannot get channels";
965 goto err_out;
966 }
967
968 /* Check and import optional channels. */
969 if (get_channels(d, "optional_channels", &d->opt_channels,
970 g_slist_length(d->channels)) != SRD_OK) {
971 fail_txt = "cannot get optional channels";
972 goto err_out;
973 }
974
975 if (get_annotations(d) != SRD_OK) {
976 fail_txt = "cannot get annotations";
977 goto err_out;
978 }
979
980 if (get_annotation_rows(d) != SRD_OK) {
981 fail_txt = "cannot get annotation rows";
982 goto err_out;
983 }
984
985 if (get_binary_classes(d) != SRD_OK) {
986 fail_txt = "cannot get binary classes";
987 goto err_out;
988 }
989
990 if (contains_duplicates(d->inputs)) {
991 fail_txt = "duplicate input IDs";
992 goto err_out;
993 }
994
995 if (contains_duplicates(d->outputs)) {
996 fail_txt = "duplicate output IDs";
997 goto err_out;
998 }
999
1000 if (contains_duplicates(d->tags)) {
1001 fail_txt = "duplicate tags";
1002 goto err_out;
1003 }
1004
1005 if (contains_duplicate_ids(d->channels, d->channels)) {
1006 fail_txt = "duplicate channel IDs";
1007 goto err_out;
1008 }
1009
1010 if (contains_duplicate_ids(d->opt_channels, d->opt_channels)) {
1011 fail_txt = "duplicate optional channel IDs";
1012 goto err_out;
1013 }
1014
1015 if (contains_duplicate_ids(d->channels, d->opt_channels)) {
1016 fail_txt = "channel and optional channel IDs contain duplicates";
1017 goto err_out;
1018 }
1019
1020 if (contains_duplicate_ids(d->options, d->options)) {
1021 fail_txt = "duplicate option IDs";
1022 goto err_out;
1023 }
1024
1025 if (contains_duplicate_ids(d->annotations, d->annotations)) {
1026 fail_txt = "duplicate annotation class IDs";
1027 goto err_out;
1028 }
1029
1030 if (contains_duplicate_row_ids(d->annotation_rows, d->annotation_rows)) {
1031 fail_txt = "duplicate annotation row IDs";
1032 goto err_out;
1033 }
1034
1035 if (contains_duplicate_ids(d->annotations, d->annotation_rows)) {
1036 fail_txt = "annotation class/row IDs contain duplicates";
1037 goto err_out;
1038 }
1039
1040 if (contains_duplicate_ids(d->binary, d->binary)) {
1041 fail_txt = "duplicate binary class IDs";
1042 goto err_out;
1043 }
1044
1045 if (get_logic_output_channels(d) != SRD_OK) {
1046 fail_txt = "cannot get logic output channels";
1047 goto err_out;
1048 }
1049
1050 PyGILState_Release(gstate);
1051
1052 /* Append it to the list of loaded decoders. */
1053 pd_list = g_slist_append(pd_list, d);
1054
1055 return SRD_OK;
1056
1057except_out:
1058 /* Don't show a message for the "common" directory, it's not a PD. */
1059 if (strcmp(module_name, "common")) {
1060 srd_exception_catch("Failed to load decoder %s: %s",
1061 module_name, fail_txt);
1062 }
1063 fail_txt = NULL;
1064
1065err_out:
1066 if (fail_txt)
1067 srd_err("Failed to load decoder %s: %s", module_name, fail_txt);
1068 decoder_free(d);
1069 PyGILState_Release(gstate);
1070
1071 return SRD_ERR_PYTHON;
1072}
1073
1074/**
1075 * Return a protocol decoder's docstring.
1076 *
1077 * @param dec The loaded protocol decoder. Must not be NULL.
1078 *
1079 * @return A newly allocated buffer containing the protocol decoder's
1080 * documentation. The caller is responsible for free'ing the buffer.
1081 *
1082 * @since 0.1.0
1083 */
1084SRD_API char *srd_decoder_doc_get(const struct srd_decoder *dec)
1085{
1086 PyObject *py_str;
1087 char *doc;
1088 PyGILState_STATE gstate;
1089
1090 if (!srd_check_init())
1091 return NULL;
1092
1093 if (!dec || !dec->py_mod)
1094 return NULL;
1095
1096 gstate = PyGILState_Ensure();
1097
1098 if (!PyObject_HasAttrString(dec->py_mod, "__doc__"))
1099 goto err;
1100
1101 if (!(py_str = PyObject_GetAttrString(dec->py_mod, "__doc__"))) {
1102 srd_exception_catch("Failed to get docstring");
1103 goto err;
1104 }
1105
1106 doc = NULL;
1107 if (py_str != Py_None)
1108 py_str_as_str(py_str, &doc);
1109 Py_DECREF(py_str);
1110
1111 PyGILState_Release(gstate);
1112
1113 return doc;
1114
1115err:
1116 PyGILState_Release(gstate);
1117
1118 return NULL;
1119}
1120
1121/**
1122 * Unload the specified protocol decoder.
1123 *
1124 * @param dec The struct srd_decoder to be unloaded.
1125 *
1126 * @return SRD_OK upon success, a (negative) error code otherwise.
1127 *
1128 * @since 0.1.0
1129 */
1130SRD_API int srd_decoder_unload(struct srd_decoder *dec)
1131{
1132 struct srd_session *sess;
1133 GSList *l;
1134
1135 if (!srd_check_init())
1136 return SRD_ERR;
1137
1138 if (!dec)
1139 return SRD_ERR_ARG;
1140
1141 /*
1142 * Since any instances of this decoder need to be released as well,
1143 * but they could be anywhere in the stack, just free the entire
1144 * stack. A frontend reloading a decoder thus has to restart all
1145 * instances, and rebuild the stack.
1146 */
1147 for (l = sessions; l; l = l->next) {
1148 sess = l->data;
1149 srd_inst_free_all(sess);
1150 }
1151
1152 /* Remove the PD from the list of loaded decoders. */
1153 pd_list = g_slist_remove(pd_list, dec);
1154
1155 decoder_free(dec);
1156
1157 return SRD_OK;
1158}
1159
1160static void srd_decoder_load_all_zip_path(char *zip_path)
1161{
1162 PyObject *zipimport_mod, *zipimporter_class, *zipimporter;
1163 PyObject *prefix_obj, *files, *key, *value, *set, *modname;
1164 Py_ssize_t pos = 0;
1165 char *prefix;
1166 size_t prefix_len;
1167 PyGILState_STATE gstate;
1168
1169 set = files = prefix_obj = zipimporter = zipimporter_class = NULL;
1170
1171 gstate = PyGILState_Ensure();
1172
1173 zipimport_mod = py_import_by_name("zipimport");
1174 if (zipimport_mod == NULL)
1175 goto err_out;
1176
1177 zipimporter_class = PyObject_GetAttrString(zipimport_mod, "zipimporter");
1178 if (zipimporter_class == NULL)
1179 goto err_out;
1180
1181 zipimporter = PyObject_CallFunction(zipimporter_class, "s", zip_path);
1182 if (zipimporter == NULL)
1183 goto err_out;
1184
1185 prefix_obj = PyObject_GetAttrString(zipimporter, "prefix");
1186 if (prefix_obj == NULL)
1187 goto err_out;
1188
1189 files = PyObject_GetAttrString(zipimporter, "_files");
1190 if (files == NULL || !PyDict_Check(files))
1191 goto err_out;
1192
1193 set = PySet_New(NULL);
1194 if (set == NULL)
1195 goto err_out;
1196
1197 if (py_str_as_str(prefix_obj, &prefix) != SRD_OK)
1198 goto err_out;
1199
1200 prefix_len = strlen(prefix);
1201
1202 while (PyDict_Next(files, &pos, &key, &value)) {
1203 char *path, *slash;
1204 if (py_str_as_str(key, &path) == SRD_OK) {
1205 if (strlen(path) > prefix_len
1206 && memcmp(path, prefix, prefix_len) == 0
1207 && (slash = strchr(path + prefix_len, '/'))) {
1208
1209 modname = PyUnicode_FromStringAndSize(path + prefix_len,
1210 slash - (path + prefix_len));
1211 if (modname == NULL) {
1212 PyErr_Clear();
1213 } else {
1214 PySet_Add(set, modname);
1215 Py_DECREF(modname);
1216 }
1217 }
1218 g_free(path);
1219 }
1220 }
1221 g_free(prefix);
1222
1223 while ((modname = PySet_Pop(set))) {
1224 char *modname_str;
1225 if (py_str_as_str(modname, &modname_str) == SRD_OK) {
1226 /* The directory name is the module name (e.g. "i2c"). */
1227 srd_decoder_load(modname_str);
1228 g_free(modname_str);
1229 }
1230 Py_DECREF(modname);
1231 }
1232
1233err_out:
1234 Py_XDECREF(set);
1235 Py_XDECREF(files);
1236 Py_XDECREF(prefix_obj);
1237 Py_XDECREF(zipimporter);
1238 Py_XDECREF(zipimporter_class);
1239 Py_XDECREF(zipimport_mod);
1240 PyErr_Clear();
1241 PyGILState_Release(gstate);
1242}
1243
1244static void srd_decoder_load_all_path(char *path)
1245{
1246 GDir *dir;
1247 const gchar *direntry;
1248
1249 if (!(dir = g_dir_open(path, 0, NULL))) {
1250 /* Not really fatal. Try zipimport method too. */
1251 srd_decoder_load_all_zip_path(path);
1252 return;
1253 }
1254
1255 /*
1256 * This ignores errors returned by srd_decoder_load(). That
1257 * function will have logged the cause, but in any case we
1258 * want to continue anyway.
1259 */
1260 while ((direntry = g_dir_read_name(dir)) != NULL) {
1261 /* The directory name is the module name (e.g. "i2c"). */
1262 srd_decoder_load(direntry);
1263 }
1264 g_dir_close(dir);
1265}
1266
1267/**
1268 * Load all installed protocol decoders.
1269 *
1270 * @return SRD_OK upon success, a (negative) error code otherwise.
1271 *
1272 * @since 0.1.0
1273 */
1274SRD_API int srd_decoder_load_all(void)
1275{
1276 GSList *l;
1277
1278 if (!srd_check_init())
1279 return SRD_ERR;
1280
1281 for (l = searchpaths; l; l = l->next)
1282 srd_decoder_load_all_path(l->data);
1283
1284 return SRD_OK;
1285}
1286
1287static void srd_decoder_unload_cb(void *arg, void *ignored)
1288{
1289 (void)ignored;
1290
1291 srd_decoder_unload((struct srd_decoder *)arg);
1292}
1293
1294/**
1295 * Unload all loaded protocol decoders.
1296 *
1297 * @return SRD_OK upon success, a (negative) error code otherwise.
1298 *
1299 * @since 0.1.0
1300 */
1301SRD_API int srd_decoder_unload_all(void)
1302{
1303 g_slist_foreach(pd_list, srd_decoder_unload_cb, NULL);
1304 g_slist_free(pd_list);
1305 pd_list = NULL;
1306
1307 return SRD_OK;
1308}
1309
1310/** @} */