ctf: remove ctf_msg_iter_set_emit_stream_{beginning,end}_message functions
[babeltrace.git] / src / plugins / ctf / fs-src / fs.c
1 /*
2 * fs.c
3 *
4 * Babeltrace CTF file system Reader Component
5 *
6 * Copyright 2015-2017 Philippe Proulx <pproulx@efficios.com>
7 * Copyright 2016 Jérémie Galarneau <jeremie.galarneau@efficios.com>
8 *
9 * Permission is hereby granted, free of charge, to any person obtaining a copy
10 * of this software and associated documentation files (the "Software"), to deal
11 * in the Software without restriction, including without limitation the rights
12 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
13 * copies of the Software, and to permit persons to whom the Software is
14 * furnished to do so, subject to the following conditions:
15 *
16 * The above copyright notice and this permission notice shall be included in
17 * all copies or substantial portions of the Software.
18 *
19 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
20 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
21 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
22 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
23 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
24 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
25 * SOFTWARE.
26 */
27
28 #define BT_COMP_LOG_SELF_COMP self_comp
29 #define BT_LOG_OUTPUT_LEVEL log_level
30 #define BT_LOG_TAG "PLUGIN/SRC.CTF.FS"
31 #include "logging/comp-logging.h"
32
33 #include "common/common.h"
34 #include <babeltrace2/babeltrace.h>
35 #include "common/uuid.h"
36 #include <glib.h>
37 #include "common/assert.h"
38 #include <inttypes.h>
39 #include <stdbool.h>
40 #include "fs.h"
41 #include "metadata.h"
42 #include "data-stream-file.h"
43 #include "file.h"
44 #include "../common/metadata/decoder.h"
45 #include "../common/metadata/ctf-meta-configure-ir-trace.h"
46 #include "../common/msg-iter/msg-iter.h"
47 #include "query.h"
48 #include "plugins/common/param-validation/param-validation.h"
49
50 struct tracer_info {
51 const char *name;
52 int64_t major;
53 int64_t minor;
54 int64_t patch;
55 };
56
57 static
58 void ctf_fs_msg_iter_data_destroy(
59 struct ctf_fs_msg_iter_data *msg_iter_data)
60 {
61 if (!msg_iter_data) {
62 return;
63 }
64
65 if (msg_iter_data->msg_iter) {
66 ctf_msg_iter_destroy(msg_iter_data->msg_iter);
67 }
68
69 if (msg_iter_data->msg_iter_medops_data) {
70 ctf_fs_ds_group_medops_data_destroy(
71 msg_iter_data->msg_iter_medops_data);
72 }
73
74 g_free(msg_iter_data);
75 }
76
77 static
78 bt_component_class_message_iterator_next_method_status ctf_fs_iterator_next_one(
79 struct ctf_fs_msg_iter_data *msg_iter_data,
80 const bt_message **out_msg)
81 {
82 bt_component_class_message_iterator_next_method_status status;
83 enum ctf_msg_iter_status msg_iter_status;
84 bt_logging_level log_level = msg_iter_data->log_level;
85
86 msg_iter_status = ctf_msg_iter_get_next_message(
87 msg_iter_data->msg_iter, out_msg);
88
89 switch (msg_iter_status) {
90 case CTF_MSG_ITER_STATUS_OK:
91 /* Cool, message has been written to *out_msg. */
92 status = BT_COMPONENT_CLASS_MESSAGE_ITERATOR_NEXT_METHOD_STATUS_OK;
93 break;
94
95 case CTF_MSG_ITER_STATUS_EOF:
96 status = BT_COMPONENT_CLASS_MESSAGE_ITERATOR_NEXT_METHOD_STATUS_END;
97 break;
98
99 case CTF_MSG_ITER_STATUS_AGAIN:
100 /*
101 * Should not make it this far as this is
102 * medium-specific; there is nothing for the user to do
103 * and it should have been handled upstream.
104 */
105 bt_common_abort();
106
107 case CTF_MSG_ITER_MEDIUM_STATUS_ERROR:
108 BT_MSG_ITER_LOGE_APPEND_CAUSE(msg_iter_data->self_msg_iter,
109 "Failed to get next message from CTF message iterator.");
110 status = BT_COMPONENT_CLASS_MESSAGE_ITERATOR_NEXT_METHOD_STATUS_ERROR;
111 break;
112
113 case CTF_MSG_ITER_MEDIUM_STATUS_MEMORY_ERROR:
114 BT_MSG_ITER_LOGE_APPEND_CAUSE(msg_iter_data->self_msg_iter,
115 "Failed to get next message from CTF message iterator.");
116 status = BT_COMPONENT_CLASS_MESSAGE_ITERATOR_NEXT_METHOD_STATUS_MEMORY_ERROR;
117 break;
118
119 default:
120 bt_common_abort();
121 }
122
123 return status;
124 }
125
126 BT_HIDDEN
127 bt_component_class_message_iterator_next_method_status ctf_fs_iterator_next(
128 bt_self_message_iterator *iterator,
129 bt_message_array_const msgs, uint64_t capacity,
130 uint64_t *count)
131 {
132 bt_component_class_message_iterator_next_method_status status;
133 struct ctf_fs_msg_iter_data *msg_iter_data =
134 bt_self_message_iterator_get_data(iterator);
135 uint64_t i = 0;
136
137 if (G_UNLIKELY(msg_iter_data->next_saved_error)) {
138 /*
139 * Last time we were called, we hit an error but had some
140 * messages to deliver, so we stashed the error here. Return
141 * it now.
142 */
143 BT_CURRENT_THREAD_MOVE_ERROR_AND_RESET(msg_iter_data->next_saved_error);
144 status = msg_iter_data->next_saved_status;
145 goto end;
146 }
147
148 do {
149 status = ctf_fs_iterator_next_one(msg_iter_data, &msgs[i]);
150 if (status == BT_COMPONENT_CLASS_MESSAGE_ITERATOR_NEXT_METHOD_STATUS_OK) {
151 i++;
152 }
153 } while (i < capacity &&
154 status == BT_COMPONENT_CLASS_MESSAGE_ITERATOR_NEXT_METHOD_STATUS_OK);
155
156 if (i > 0) {
157 /*
158 * Even if ctf_fs_iterator_next_one() returned something
159 * else than BT_COMPONENT_CLASS_MESSAGE_ITERATOR_NEXT_METHOD_STATUS_OK, we
160 * accumulated message objects in the output
161 * message array, so we need to return
162 * BT_COMPONENT_CLASS_MESSAGE_ITERATOR_NEXT_METHOD_STATUS_OK so that they are
163 * transfered to downstream. This other status occurs
164 * again the next time muxer_msg_iter_do_next() is
165 * called, possibly without any accumulated
166 * message, in which case we'll return it.
167 */
168 if (status < 0) {
169 /*
170 * Save this error for the next _next call. Assume that
171 * this component always appends error causes when
172 * returning an error status code, which will cause the
173 * current thread error to be non-NULL.
174 */
175 msg_iter_data->next_saved_error = bt_current_thread_take_error();
176 BT_ASSERT(msg_iter_data->next_saved_error);
177 msg_iter_data->next_saved_status = status;
178 }
179
180 *count = i;
181 status = BT_COMPONENT_CLASS_MESSAGE_ITERATOR_NEXT_METHOD_STATUS_OK;
182 }
183
184 end:
185 return status;
186 }
187
188 BT_HIDDEN
189 bt_component_class_message_iterator_seek_beginning_method_status
190 ctf_fs_iterator_seek_beginning(bt_self_message_iterator *it)
191 {
192 struct ctf_fs_msg_iter_data *msg_iter_data =
193 bt_self_message_iterator_get_data(it);
194
195 BT_ASSERT(msg_iter_data);
196
197 ctf_msg_iter_reset(msg_iter_data->msg_iter);
198 ctf_fs_ds_group_medops_data_reset(msg_iter_data->msg_iter_medops_data);
199
200 return BT_COMPONENT_CLASS_MESSAGE_ITERATOR_SEEK_BEGINNING_METHOD_STATUS_OK;
201 }
202
203 BT_HIDDEN
204 void ctf_fs_iterator_finalize(bt_self_message_iterator *it)
205 {
206 ctf_fs_msg_iter_data_destroy(
207 bt_self_message_iterator_get_data(it));
208 }
209
210 BT_HIDDEN
211 bt_component_class_message_iterator_initialize_method_status ctf_fs_iterator_init(
212 bt_self_message_iterator *self_msg_iter,
213 bt_self_message_iterator_configuration *config,
214 bt_self_component_source *self_comp_src,
215 bt_self_component_port_output *self_port)
216 {
217 struct ctf_fs_port_data *port_data;
218 struct ctf_fs_msg_iter_data *msg_iter_data = NULL;
219 bt_component_class_message_iterator_initialize_method_status status;
220 bt_logging_level log_level;
221 bt_self_component *self_comp =
222 bt_self_component_source_as_self_component(self_comp_src);
223 enum ctf_msg_iter_medium_status medium_status;
224
225 port_data = bt_self_component_port_get_data(
226 bt_self_component_port_output_as_self_component_port(
227 self_port));
228 BT_ASSERT(port_data);
229 log_level = port_data->ctf_fs->log_level;
230 msg_iter_data = g_new0(struct ctf_fs_msg_iter_data, 1);
231 if (!msg_iter_data) {
232 status = BT_COMPONENT_CLASS_MESSAGE_ITERATOR_INITIALIZE_METHOD_STATUS_MEMORY_ERROR;
233 goto error;
234 }
235
236 msg_iter_data->log_level = log_level;
237 msg_iter_data->self_comp = self_comp;
238 msg_iter_data->self_msg_iter = self_msg_iter;
239 msg_iter_data->ds_file_group = port_data->ds_file_group;
240
241 medium_status = ctf_fs_ds_group_medops_data_create(
242 msg_iter_data->ds_file_group, self_msg_iter, log_level,
243 &msg_iter_data->msg_iter_medops_data);
244 BT_ASSERT(
245 medium_status == CTF_MSG_ITER_MEDIUM_STATUS_OK ||
246 medium_status == CTF_MSG_ITER_MEDIUM_STATUS_ERROR ||
247 medium_status == CTF_MSG_ITER_MEDIUM_STATUS_MEMORY_ERROR);
248 if (medium_status != CTF_MSG_ITER_MEDIUM_STATUS_OK) {
249 BT_MSG_ITER_LOGE_APPEND_CAUSE(self_msg_iter,
250 "Failed to create ctf_fs_ds_group_medops");
251 status = (int) medium_status;
252 goto error;
253 }
254
255 msg_iter_data->msg_iter = ctf_msg_iter_create(
256 msg_iter_data->ds_file_group->ctf_fs_trace->metadata->tc,
257 bt_common_get_page_size(msg_iter_data->log_level) * 8,
258 ctf_fs_ds_group_medops,
259 msg_iter_data->msg_iter_medops_data,
260 msg_iter_data->log_level,
261 self_comp, self_msg_iter);
262 if (!msg_iter_data->msg_iter) {
263 BT_COMP_LOGE_APPEND_CAUSE(self_comp, "Cannot create a CTF message iterator.");
264 status = BT_COMPONENT_CLASS_MESSAGE_ITERATOR_INITIALIZE_METHOD_STATUS_MEMORY_ERROR;
265 goto error;
266 }
267
268 /*
269 * This iterator can seek forward if its stream class has a default
270 * clock class.
271 */
272 if (msg_iter_data->ds_file_group->sc->default_clock_class) {
273 bt_self_message_iterator_configuration_set_can_seek_forward(
274 config, true);
275 }
276
277 bt_self_message_iterator_set_data(self_msg_iter,
278 msg_iter_data);
279 msg_iter_data = NULL;
280
281 status = BT_COMPONENT_CLASS_MESSAGE_ITERATOR_INITIALIZE_METHOD_STATUS_OK;
282 goto end;
283
284 error:
285 bt_self_message_iterator_set_data(self_msg_iter, NULL);
286
287 end:
288 ctf_fs_msg_iter_data_destroy(msg_iter_data);
289 return status;
290 }
291
292 static
293 void ctf_fs_trace_destroy(struct ctf_fs_trace *ctf_fs_trace)
294 {
295 if (!ctf_fs_trace) {
296 return;
297 }
298
299 if (ctf_fs_trace->ds_file_groups) {
300 g_ptr_array_free(ctf_fs_trace->ds_file_groups, TRUE);
301 }
302
303 BT_TRACE_PUT_REF_AND_RESET(ctf_fs_trace->trace);
304
305 if (ctf_fs_trace->path) {
306 g_string_free(ctf_fs_trace->path, TRUE);
307 }
308
309 if (ctf_fs_trace->metadata) {
310 ctf_fs_metadata_fini(ctf_fs_trace->metadata);
311 g_free(ctf_fs_trace->metadata);
312 }
313
314 g_free(ctf_fs_trace);
315 }
316
317 BT_HIDDEN
318 void ctf_fs_destroy(struct ctf_fs_component *ctf_fs)
319 {
320 if (!ctf_fs) {
321 return;
322 }
323
324 ctf_fs_trace_destroy(ctf_fs->trace);
325
326 if (ctf_fs->port_data) {
327 g_ptr_array_free(ctf_fs->port_data, TRUE);
328 }
329
330 g_free(ctf_fs);
331 }
332
333 static
334 void port_data_destroy(struct ctf_fs_port_data *port_data)
335 {
336 if (!port_data) {
337 return;
338 }
339
340 g_free(port_data);
341 }
342
343 static
344 void port_data_destroy_notifier(void *data) {
345 port_data_destroy(data);
346 }
347
348 static
349 void ctf_fs_trace_destroy_notifier(void *data)
350 {
351 struct ctf_fs_trace *trace = data;
352 ctf_fs_trace_destroy(trace);
353 }
354
355 struct ctf_fs_component *ctf_fs_component_create(bt_logging_level log_level,
356 bt_self_component *self_comp)
357 {
358 struct ctf_fs_component *ctf_fs;
359
360 ctf_fs = g_new0(struct ctf_fs_component, 1);
361 if (!ctf_fs) {
362 goto error;
363 }
364
365 ctf_fs->log_level = log_level;
366 ctf_fs->port_data =
367 g_ptr_array_new_with_free_func(port_data_destroy_notifier);
368 if (!ctf_fs->port_data) {
369 goto error;
370 }
371
372 goto end;
373
374 error:
375 ctf_fs_destroy(ctf_fs);
376 ctf_fs = NULL;
377
378 end:
379 return ctf_fs;
380 }
381
382 void ctf_fs_finalize(bt_self_component_source *component)
383 {
384 ctf_fs_destroy(bt_self_component_get_data(
385 bt_self_component_source_as_self_component(component)));
386 }
387
388 gchar *ctf_fs_make_port_name(struct ctf_fs_ds_file_group *ds_file_group)
389 {
390 GString *name = g_string_new(NULL);
391
392 /*
393 * The unique port name is generated by concatenating unique identifiers
394 * for:
395 *
396 * - the trace
397 * - the stream class
398 * - the stream
399 */
400
401 /* For the trace, use the uuid if present, else the path. */
402 if (ds_file_group->ctf_fs_trace->metadata->tc->is_uuid_set) {
403 char uuid_str[BT_UUID_STR_LEN + 1];
404
405 bt_uuid_to_str(ds_file_group->ctf_fs_trace->metadata->tc->uuid, uuid_str);
406 g_string_assign(name, uuid_str);
407 } else {
408 g_string_assign(name, ds_file_group->ctf_fs_trace->path->str);
409 }
410
411 /*
412 * For the stream class, use the id if present. We can omit this field
413 * otherwise, as there will only be a single stream class.
414 */
415 if (ds_file_group->sc->id != UINT64_C(-1)) {
416 g_string_append_printf(name, " | %" PRIu64, ds_file_group->sc->id);
417 }
418
419 /* For the stream, use the id if present, else, use the path. */
420 if (ds_file_group->stream_id != UINT64_C(-1)) {
421 g_string_append_printf(name, " | %" PRIu64, ds_file_group->stream_id);
422 } else {
423 BT_ASSERT(ds_file_group->ds_file_infos->len == 1);
424 struct ctf_fs_ds_file_info *ds_file_info =
425 g_ptr_array_index(ds_file_group->ds_file_infos, 0);
426 g_string_append_printf(name, " | %s", ds_file_info->path->str);
427 }
428
429 return g_string_free(name, FALSE);
430 }
431
432 static
433 int create_one_port_for_trace(struct ctf_fs_component *ctf_fs,
434 struct ctf_fs_trace *ctf_fs_trace,
435 struct ctf_fs_ds_file_group *ds_file_group,
436 bt_self_component_source *self_comp_src)
437 {
438 int ret = 0;
439 struct ctf_fs_port_data *port_data = NULL;
440 gchar *port_name;
441 bt_logging_level log_level = ctf_fs->log_level;
442 bt_self_component *self_comp =
443 bt_self_component_source_as_self_component(self_comp_src);
444
445 port_name = ctf_fs_make_port_name(ds_file_group);
446 if (!port_name) {
447 goto error;
448 }
449
450 BT_COMP_LOGI("Creating one port named `%s`", port_name);
451
452 /* Create output port for this file */
453 port_data = g_new0(struct ctf_fs_port_data, 1);
454 if (!port_data) {
455 goto error;
456 }
457
458 port_data->ctf_fs = ctf_fs;
459 port_data->ds_file_group = ds_file_group;
460 ret = bt_self_component_source_add_output_port(
461 self_comp_src, port_name, port_data, NULL);
462 if (ret) {
463 goto error;
464 }
465
466 g_ptr_array_add(ctf_fs->port_data, port_data);
467 port_data = NULL;
468 goto end;
469
470 error:
471 ret = -1;
472
473 end:
474 g_free(port_name);
475
476 port_data_destroy(port_data);
477 return ret;
478 }
479
480 static
481 int create_ports_for_trace(struct ctf_fs_component *ctf_fs,
482 struct ctf_fs_trace *ctf_fs_trace,
483 bt_self_component_source *self_comp_src)
484 {
485 int ret = 0;
486 size_t i;
487 bt_logging_level log_level = ctf_fs_trace->log_level;
488 bt_self_component *self_comp =
489 bt_self_component_source_as_self_component(self_comp_src);
490
491 /* Create one output port for each stream file group */
492 for (i = 0; i < ctf_fs_trace->ds_file_groups->len; i++) {
493 struct ctf_fs_ds_file_group *ds_file_group =
494 g_ptr_array_index(ctf_fs_trace->ds_file_groups, i);
495
496 ret = create_one_port_for_trace(ctf_fs, ctf_fs_trace,
497 ds_file_group, self_comp_src);
498 if (ret) {
499 BT_COMP_LOGE_APPEND_CAUSE(self_comp, "Cannot create output port.");
500 goto end;
501 }
502 }
503
504 end:
505 return ret;
506 }
507
508 static
509 void ctf_fs_ds_file_info_destroy(struct ctf_fs_ds_file_info *ds_file_info)
510 {
511 if (!ds_file_info) {
512 return;
513 }
514
515 if (ds_file_info->path) {
516 g_string_free(ds_file_info->path, TRUE);
517 }
518
519 g_free(ds_file_info);
520 }
521
522 static
523 struct ctf_fs_ds_file_info *ctf_fs_ds_file_info_create(const char *path,
524 int64_t begin_ns)
525 {
526 struct ctf_fs_ds_file_info *ds_file_info;
527
528 ds_file_info = g_new0(struct ctf_fs_ds_file_info, 1);
529 if (!ds_file_info) {
530 goto end;
531 }
532
533 ds_file_info->path = g_string_new(path);
534 if (!ds_file_info->path) {
535 ctf_fs_ds_file_info_destroy(ds_file_info);
536 ds_file_info = NULL;
537 goto end;
538 }
539
540 ds_file_info->begin_ns = begin_ns;
541
542 end:
543 return ds_file_info;
544 }
545
546 static
547 void ctf_fs_ds_file_group_destroy(struct ctf_fs_ds_file_group *ds_file_group)
548 {
549 if (!ds_file_group) {
550 return;
551 }
552
553 if (ds_file_group->ds_file_infos) {
554 g_ptr_array_free(ds_file_group->ds_file_infos, TRUE);
555 }
556
557 ctf_fs_ds_index_destroy(ds_file_group->index);
558
559 bt_stream_put_ref(ds_file_group->stream);
560 g_free(ds_file_group);
561 }
562
563 static
564 struct ctf_fs_ds_file_group *ctf_fs_ds_file_group_create(
565 struct ctf_fs_trace *ctf_fs_trace,
566 struct ctf_stream_class *sc,
567 uint64_t stream_instance_id,
568 struct ctf_fs_ds_index *index)
569 {
570 struct ctf_fs_ds_file_group *ds_file_group;
571
572 ds_file_group = g_new0(struct ctf_fs_ds_file_group, 1);
573 if (!ds_file_group) {
574 goto error;
575 }
576
577 ds_file_group->ds_file_infos = g_ptr_array_new_with_free_func(
578 (GDestroyNotify) ctf_fs_ds_file_info_destroy);
579 if (!ds_file_group->ds_file_infos) {
580 goto error;
581 }
582
583 ds_file_group->index = index;
584
585 ds_file_group->stream_id = stream_instance_id;
586 BT_ASSERT(sc);
587 ds_file_group->sc = sc;
588 ds_file_group->ctf_fs_trace = ctf_fs_trace;
589 goto end;
590
591 error:
592 ctf_fs_ds_file_group_destroy(ds_file_group);
593 ctf_fs_ds_index_destroy(index);
594 ds_file_group = NULL;
595
596 end:
597 return ds_file_group;
598 }
599
600 /* Replace by g_ptr_array_insert when we depend on glib >= 2.40. */
601 static
602 void array_insert(GPtrArray *array, gpointer element, size_t pos)
603 {
604 size_t original_array_len = array->len;
605
606 /* Allocate an unused element at the end of the array. */
607 g_ptr_array_add(array, NULL);
608
609 /* If we are not inserting at the end, move the elements by one. */
610 if (pos < original_array_len) {
611 memmove(&(array->pdata[pos + 1]),
612 &(array->pdata[pos]),
613 (original_array_len - pos) * sizeof(gpointer));
614 }
615
616 /* Insert the value. */
617 array->pdata[pos] = element;
618 }
619
620 /*
621 * Insert ds_file_info in ds_file_group's list of ds_file_infos at the right
622 * place to keep it sorted.
623 */
624
625 static
626 void ds_file_group_insert_ds_file_info_sorted(
627 struct ctf_fs_ds_file_group *ds_file_group,
628 struct ctf_fs_ds_file_info *ds_file_info)
629 {
630 guint i;
631
632 /* Find the spot where to insert this ds_file_info. */
633 for (i = 0; i < ds_file_group->ds_file_infos->len; i++) {
634 struct ctf_fs_ds_file_info *other_ds_file_info =
635 g_ptr_array_index(ds_file_group->ds_file_infos, i);
636
637 if (ds_file_info->begin_ns < other_ds_file_info->begin_ns) {
638 break;
639 }
640 }
641
642 array_insert(ds_file_group->ds_file_infos, ds_file_info, i);
643 }
644
645 static
646 bool ds_index_entries_equal(
647 const struct ctf_fs_ds_index_entry *left,
648 const struct ctf_fs_ds_index_entry *right)
649 {
650 if (left->packet_size != right->packet_size) {
651 return false;
652 }
653
654 if (left->timestamp_begin != right->timestamp_begin) {
655 return false;
656 }
657
658 if (left->timestamp_end != right->timestamp_end) {
659 return false;
660 }
661
662 if (left->packet_seq_num != right->packet_seq_num) {
663 return false;
664 }
665
666 return true;
667 }
668
669 /*
670 * Insert `entry` into `index`, without duplication.
671 *
672 * The entry is inserted only if there isn't an identical entry already.
673 *
674 * In any case, the ownership of `entry` is transferred to this function. So if
675 * the entry is not inserted, it is freed.
676 */
677
678 static
679 void ds_index_insert_ds_index_entry_sorted(
680 struct ctf_fs_ds_index *index,
681 struct ctf_fs_ds_index_entry *entry)
682 {
683 guint i;
684 struct ctf_fs_ds_index_entry *other_entry;
685
686 /* Find the spot where to insert this index entry. */
687 for (i = 0; i < index->entries->len; i++) {
688 other_entry = g_ptr_array_index(index->entries, i);
689
690 if (entry->timestamp_begin_ns <= other_entry->timestamp_begin_ns) {
691 break;
692 }
693 }
694
695 /*
696 * Insert the entry only if a duplicate doesn't already exist.
697 *
698 * There can be duplicate packets if reading multiple overlapping
699 * snapshots of the same trace. We then want the index to contain
700 * a reference to only one copy of that packet.
701 */
702 if (i == index->entries->len ||
703 !ds_index_entries_equal(entry, other_entry)) {
704 array_insert(index->entries, entry, i);
705 } else {
706 g_free(entry);
707 }
708 }
709
710 static
711 void merge_ctf_fs_ds_indexes(struct ctf_fs_ds_index *dest, struct ctf_fs_ds_index *src)
712 {
713 guint i;
714
715 for (i = 0; i < src->entries->len; i++) {
716 struct ctf_fs_ds_index_entry *entry =
717 g_ptr_array_index(src->entries, i);
718
719 /*
720 * Ownership of the ctf_fs_ds_index_entry is transferred to
721 * ds_index_insert_ds_index_entry_sorted.
722 */
723 g_ptr_array_index(src->entries, i) = NULL;
724 ds_index_insert_ds_index_entry_sorted(dest, entry);
725 }
726 }
727
728 static
729 int add_ds_file_to_ds_file_group(struct ctf_fs_trace *ctf_fs_trace,
730 const char *path)
731 {
732 int64_t stream_instance_id = -1;
733 int64_t begin_ns = -1;
734 struct ctf_fs_ds_file_group *ds_file_group = NULL;
735 bool add_group = false;
736 int ret;
737 size_t i;
738 struct ctf_fs_ds_file *ds_file = NULL;
739 struct ctf_fs_ds_file_info *ds_file_info = NULL;
740 struct ctf_fs_ds_index *index = NULL;
741 struct ctf_msg_iter *msg_iter = NULL;
742 struct ctf_stream_class *sc = NULL;
743 struct ctf_msg_iter_packet_properties props;
744 bt_logging_level log_level = ctf_fs_trace->log_level;
745 bt_self_component *self_comp = ctf_fs_trace->self_comp;
746 bt_self_component_class *self_comp_class = ctf_fs_trace->self_comp_class;
747
748 /*
749 * Create a temporary ds_file to read some properties about the data
750 * stream file.
751 */
752 ds_file = ctf_fs_ds_file_create(ctf_fs_trace, NULL, NULL, path,
753 log_level);
754 if (!ds_file) {
755 goto error;
756 }
757
758 /* Create a temporary iterator to read the ds_file. */
759 msg_iter = ctf_msg_iter_create(ctf_fs_trace->metadata->tc,
760 bt_common_get_page_size(log_level) * 8,
761 ctf_fs_ds_file_medops, ds_file, log_level, self_comp, NULL);
762 if (!msg_iter) {
763 BT_COMP_LOGE_STR("Cannot create a CTF message iterator.");
764 goto error;
765 }
766
767 ret = ctf_msg_iter_get_packet_properties(msg_iter, &props);
768 if (ret) {
769 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
770 "Cannot get stream file's first packet's header and context fields (`%s`).",
771 path);
772 goto error;
773 }
774
775 sc = ctf_trace_class_borrow_stream_class_by_id(ds_file->metadata->tc,
776 props.stream_class_id);
777 BT_ASSERT(sc);
778 stream_instance_id = props.data_stream_id;
779
780 if (props.snapshots.beginning_clock != UINT64_C(-1)) {
781 BT_ASSERT(sc->default_clock_class);
782 ret = bt_util_clock_cycles_to_ns_from_origin(
783 props.snapshots.beginning_clock,
784 sc->default_clock_class->frequency,
785 sc->default_clock_class->offset_seconds,
786 sc->default_clock_class->offset_cycles, &begin_ns);
787 if (ret) {
788 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
789 "Cannot convert clock cycles to nanoseconds from origin (`%s`).",
790 path);
791 goto error;
792 }
793 }
794
795 ds_file_info = ctf_fs_ds_file_info_create(path, begin_ns);
796 if (!ds_file_info) {
797 goto error;
798 }
799
800 index = ctf_fs_ds_file_build_index(ds_file, ds_file_info, msg_iter);
801 if (!index) {
802 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(
803 self_comp, self_comp_class,
804 "Failed to index CTF stream file \'%s\'",
805 ds_file->file->path->str);
806 goto error;
807 }
808
809 if (begin_ns == -1) {
810 /*
811 * No beggining timestamp to sort the stream files
812 * within a stream file group, so consider that this
813 * file must be the only one within its group.
814 */
815 stream_instance_id = -1;
816 }
817
818 if (stream_instance_id == -1) {
819 /*
820 * No stream instance ID or no beginning timestamp:
821 * create a unique stream file group for this stream
822 * file because, even if there's a stream instance ID,
823 * there's no timestamp to order the file within its
824 * group.
825 */
826 ds_file_group = ctf_fs_ds_file_group_create(ctf_fs_trace,
827 sc, UINT64_C(-1), index);
828 /* Ownership of index is transferred. */
829 index = NULL;
830
831 if (!ds_file_group) {
832 goto error;
833 }
834
835 ds_file_group_insert_ds_file_info_sorted(ds_file_group,
836 BT_MOVE_REF(ds_file_info));
837
838 add_group = true;
839 goto end;
840 }
841
842 BT_ASSERT(stream_instance_id != -1);
843 BT_ASSERT(begin_ns != -1);
844
845 /* Find an existing stream file group with this ID */
846 for (i = 0; i < ctf_fs_trace->ds_file_groups->len; i++) {
847 ds_file_group = g_ptr_array_index(
848 ctf_fs_trace->ds_file_groups, i);
849
850 if (ds_file_group->sc == sc &&
851 ds_file_group->stream_id ==
852 stream_instance_id) {
853 break;
854 }
855
856 ds_file_group = NULL;
857 }
858
859 if (!ds_file_group) {
860 ds_file_group = ctf_fs_ds_file_group_create(ctf_fs_trace,
861 sc, stream_instance_id, index);
862 /* Ownership of index is transferred. */
863 index = NULL;
864 if (!ds_file_group) {
865 goto error;
866 }
867
868 add_group = true;
869 } else {
870 merge_ctf_fs_ds_indexes(ds_file_group->index, index);
871 }
872
873 ds_file_group_insert_ds_file_info_sorted(ds_file_group,
874 BT_MOVE_REF(ds_file_info));
875
876 goto end;
877
878 error:
879 ctf_fs_ds_file_group_destroy(ds_file_group);
880 ds_file_group = NULL;
881 ret = -1;
882
883 end:
884 if (add_group && ds_file_group) {
885 g_ptr_array_add(ctf_fs_trace->ds_file_groups, ds_file_group);
886 }
887
888 ctf_fs_ds_file_destroy(ds_file);
889 ctf_fs_ds_file_info_destroy(ds_file_info);
890
891 if (msg_iter) {
892 ctf_msg_iter_destroy(msg_iter);
893 }
894
895 ctf_fs_ds_index_destroy(index);
896 return ret;
897 }
898
899 static
900 int create_ds_file_groups(struct ctf_fs_trace *ctf_fs_trace)
901 {
902 int ret = 0;
903 const char *basename;
904 GError *error = NULL;
905 GDir *dir = NULL;
906 bt_logging_level log_level = ctf_fs_trace->log_level;
907 bt_self_component *self_comp = ctf_fs_trace->self_comp;
908 bt_self_component_class *self_comp_class = ctf_fs_trace->self_comp_class;
909
910 /* Check each file in the path directory, except specific ones */
911 dir = g_dir_open(ctf_fs_trace->path->str, 0, &error);
912 if (!dir) {
913 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
914 "Cannot open directory `%s`: %s (code %d)",
915 ctf_fs_trace->path->str, error->message,
916 error->code);
917 goto error;
918 }
919
920 while ((basename = g_dir_read_name(dir))) {
921 struct ctf_fs_file *file;
922
923 if (strcmp(basename, CTF_FS_METADATA_FILENAME) == 0) {
924 /* Ignore the metadata stream. */
925 BT_COMP_LOGI("Ignoring metadata file `%s" G_DIR_SEPARATOR_S "%s`",
926 ctf_fs_trace->path->str, basename);
927 continue;
928 }
929
930 if (basename[0] == '.') {
931 BT_COMP_LOGI("Ignoring hidden file `%s" G_DIR_SEPARATOR_S "%s`",
932 ctf_fs_trace->path->str, basename);
933 continue;
934 }
935
936 /* Create the file. */
937 file = ctf_fs_file_create(log_level, self_comp);
938 if (!file) {
939 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
940 "Cannot create stream file object for file `%s" G_DIR_SEPARATOR_S "%s`",
941 ctf_fs_trace->path->str, basename);
942 goto error;
943 }
944
945 /* Create full path string. */
946 g_string_append_printf(file->path, "%s" G_DIR_SEPARATOR_S "%s",
947 ctf_fs_trace->path->str, basename);
948 if (!g_file_test(file->path->str, G_FILE_TEST_IS_REGULAR)) {
949 BT_COMP_LOGI("Ignoring non-regular file `%s`",
950 file->path->str);
951 ctf_fs_file_destroy(file);
952 file = NULL;
953 continue;
954 }
955
956 ret = ctf_fs_file_open(file, "rb");
957 if (ret) {
958 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
959 "Cannot open stream file `%s`",
960 file->path->str);
961 goto error;
962 }
963
964 if (file->size == 0) {
965 /* Skip empty stream. */
966 BT_COMP_LOGI("Ignoring empty file `%s`", file->path->str);
967 ctf_fs_file_destroy(file);
968 continue;
969 }
970
971 ret = add_ds_file_to_ds_file_group(ctf_fs_trace,
972 file->path->str);
973 if (ret) {
974 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
975 "Cannot add stream file `%s` to stream file group",
976 file->path->str);
977 ctf_fs_file_destroy(file);
978 goto error;
979 }
980
981 ctf_fs_file_destroy(file);
982 }
983
984 goto end;
985
986 error:
987 ret = -1;
988
989 end:
990 if (dir) {
991 g_dir_close(dir);
992 dir = NULL;
993 }
994
995 if (error) {
996 g_error_free(error);
997 }
998
999 return ret;
1000 }
1001
1002 static
1003 int set_trace_name(bt_trace *trace, const char *name_suffix,
1004 bt_logging_level log_level, bt_self_component *self_comp)
1005 {
1006 int ret = 0;
1007 const bt_value *val;
1008 GString *name;
1009
1010 name = g_string_new(NULL);
1011 if (!name) {
1012 BT_COMP_LOGE_STR("Failed to allocate a GString.");
1013 ret = -1;
1014 goto end;
1015 }
1016
1017 /*
1018 * Check if we have a trace environment string value named `hostname`.
1019 * If so, use it as the trace name's prefix.
1020 */
1021 val = bt_trace_borrow_environment_entry_value_by_name_const(
1022 trace, "hostname");
1023 if (val && bt_value_is_string(val)) {
1024 g_string_append(name, bt_value_string_get(val));
1025
1026 if (name_suffix) {
1027 g_string_append_c(name, G_DIR_SEPARATOR);
1028 }
1029 }
1030
1031 if (name_suffix) {
1032 g_string_append(name, name_suffix);
1033 }
1034
1035 ret = bt_trace_set_name(trace, name->str);
1036 if (ret) {
1037 goto end;
1038 }
1039
1040 goto end;
1041
1042 end:
1043 if (name) {
1044 g_string_free(name, TRUE);
1045 }
1046
1047 return ret;
1048 }
1049
1050 static
1051 struct ctf_fs_trace *ctf_fs_trace_create(
1052 bt_self_component *self_comp,
1053 bt_self_component_class *self_comp_class,
1054 const char *path, const char *name,
1055 struct ctf_fs_metadata_config *metadata_config,
1056 bt_logging_level log_level)
1057 {
1058 struct ctf_fs_trace *ctf_fs_trace;
1059 int ret;
1060
1061 /* Only one of them must be set. */
1062 BT_ASSERT(!self_comp != !self_comp_class);
1063
1064 ctf_fs_trace = g_new0(struct ctf_fs_trace, 1);
1065 if (!ctf_fs_trace) {
1066 goto end;
1067 }
1068
1069 ctf_fs_trace->log_level = log_level;
1070 ctf_fs_trace->self_comp = self_comp;
1071 ctf_fs_trace->self_comp_class = self_comp_class;
1072 ctf_fs_trace->path = g_string_new(path);
1073 if (!ctf_fs_trace->path) {
1074 goto error;
1075 }
1076
1077 ctf_fs_trace->metadata = g_new0(struct ctf_fs_metadata, 1);
1078 if (!ctf_fs_trace->metadata) {
1079 goto error;
1080 }
1081
1082 ctf_fs_metadata_init(ctf_fs_trace->metadata);
1083 ctf_fs_trace->ds_file_groups = g_ptr_array_new_with_free_func(
1084 (GDestroyNotify) ctf_fs_ds_file_group_destroy);
1085 if (!ctf_fs_trace->ds_file_groups) {
1086 goto error;
1087 }
1088
1089 ret = ctf_fs_metadata_set_trace_class(self_comp, ctf_fs_trace,
1090 metadata_config);
1091 if (ret) {
1092 goto error;
1093 }
1094
1095 if (ctf_fs_trace->metadata->trace_class) {
1096 ctf_fs_trace->trace =
1097 bt_trace_create(ctf_fs_trace->metadata->trace_class);
1098 if (!ctf_fs_trace->trace) {
1099 goto error;
1100 }
1101 }
1102
1103 if (ctf_fs_trace->trace) {
1104 ret = ctf_trace_class_configure_ir_trace(
1105 ctf_fs_trace->metadata->tc, ctf_fs_trace->trace);
1106 if (ret) {
1107 goto error;
1108 }
1109
1110 ret = set_trace_name(ctf_fs_trace->trace, name, log_level,
1111 self_comp);
1112 if (ret) {
1113 goto error;
1114 }
1115 }
1116
1117 ret = create_ds_file_groups(ctf_fs_trace);
1118 if (ret) {
1119 goto error;
1120 }
1121
1122 goto end;
1123
1124 error:
1125 ctf_fs_trace_destroy(ctf_fs_trace);
1126 ctf_fs_trace = NULL;
1127
1128 end:
1129 return ctf_fs_trace;
1130 }
1131
1132 static
1133 int path_is_ctf_trace(const char *path)
1134 {
1135 GString *metadata_path = g_string_new(NULL);
1136 int ret = 0;
1137
1138 if (!metadata_path) {
1139 ret = -1;
1140 goto end;
1141 }
1142
1143 g_string_printf(metadata_path, "%s" G_DIR_SEPARATOR_S "%s", path, CTF_FS_METADATA_FILENAME);
1144
1145 if (g_file_test(metadata_path->str, G_FILE_TEST_IS_REGULAR)) {
1146 ret = 1;
1147 goto end;
1148 }
1149
1150 end:
1151 g_string_free(metadata_path, TRUE);
1152 return ret;
1153 }
1154
1155 /* Helper for ctf_fs_component_create_ctf_fs_trace, to handle a single path. */
1156
1157 static
1158 int ctf_fs_component_create_ctf_fs_trace_one_path(
1159 struct ctf_fs_component *ctf_fs,
1160 const char *path_param,
1161 const char *trace_name,
1162 GPtrArray *traces,
1163 bt_self_component *self_comp,
1164 bt_self_component_class *self_comp_class)
1165 {
1166 struct ctf_fs_trace *ctf_fs_trace;
1167 int ret;
1168 GString *norm_path;
1169 bt_logging_level log_level = ctf_fs->log_level;
1170
1171 norm_path = bt_common_normalize_path(path_param, NULL);
1172 if (!norm_path) {
1173 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
1174 "Failed to normalize path: `%s`.",
1175 path_param);
1176 goto error;
1177 }
1178
1179 ret = path_is_ctf_trace(norm_path->str);
1180 if (ret < 0) {
1181 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
1182 "Failed to check if path is a CTF trace: path=%s",
1183 norm_path->str);
1184 goto error;
1185 } else if (ret == 0) {
1186 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
1187 "Path is not a CTF trace (does not contain a metadata file): `%s`.",
1188 norm_path->str);
1189 goto error;
1190 }
1191
1192 // FIXME: Remove or ifdef for __MINGW32__
1193 if (strcmp(norm_path->str, "/") == 0) {
1194 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
1195 "Opening a trace in `/` is not supported.");
1196 ret = -1;
1197 goto end;
1198 }
1199
1200 ctf_fs_trace = ctf_fs_trace_create(self_comp, self_comp_class, norm_path->str,
1201 trace_name, &ctf_fs->metadata_config, log_level);
1202 if (!ctf_fs_trace) {
1203 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
1204 "Cannot create trace for `%s`.",
1205 norm_path->str);
1206 goto error;
1207 }
1208
1209 g_ptr_array_add(traces, ctf_fs_trace);
1210 ctf_fs_trace = NULL;
1211
1212 ret = 0;
1213 goto end;
1214
1215 error:
1216 ret = -1;
1217
1218 end:
1219 if (norm_path) {
1220 g_string_free(norm_path, TRUE);
1221 }
1222
1223 return ret;
1224 }
1225
1226 /*
1227 * Count the number of stream and event classes defined by this trace's metadata.
1228 *
1229 * This is used to determine which metadata is the "latest", out of multiple
1230 * traces sharing the same UUID. It is assumed that amongst all these metadatas,
1231 * a bigger metadata is a superset of a smaller metadata. Therefore, it is
1232 * enough to just count the classes.
1233 */
1234
1235 static
1236 unsigned int metadata_count_stream_and_event_classes(struct ctf_fs_trace *trace)
1237 {
1238 unsigned int num = trace->metadata->tc->stream_classes->len;
1239 guint i;
1240
1241 for (i = 0; i < trace->metadata->tc->stream_classes->len; i++) {
1242 struct ctf_stream_class *sc = trace->metadata->tc->stream_classes->pdata[i];
1243 num += sc->event_classes->len;
1244 }
1245
1246 return num;
1247 }
1248
1249 /*
1250 * Merge the src ds_file_group into dest. This consists of merging their
1251 * ds_file_infos, making sure to keep the result sorted.
1252 */
1253
1254 static
1255 void merge_ctf_fs_ds_file_groups(struct ctf_fs_ds_file_group *dest, struct ctf_fs_ds_file_group *src)
1256 {
1257 guint i;
1258
1259 for (i = 0; i < src->ds_file_infos->len; i++) {
1260 struct ctf_fs_ds_file_info *ds_file_info =
1261 g_ptr_array_index(src->ds_file_infos, i);
1262
1263 /* Ownership of the ds_file_info is transferred to dest. */
1264 g_ptr_array_index(src->ds_file_infos, i) = NULL;
1265
1266 ds_file_group_insert_ds_file_info_sorted(dest, ds_file_info);
1267 }
1268
1269 /* Merge both indexes. */
1270 merge_ctf_fs_ds_indexes(dest->index, src->index);
1271 }
1272 /* Merge src_trace's data stream file groups into dest_trace's. */
1273
1274 static
1275 int merge_matching_ctf_fs_ds_file_groups(
1276 struct ctf_fs_trace *dest_trace,
1277 struct ctf_fs_trace *src_trace)
1278 {
1279
1280 GPtrArray *dest = dest_trace->ds_file_groups;
1281 GPtrArray *src = src_trace->ds_file_groups;
1282 guint s_i;
1283 int ret = 0;
1284
1285 /*
1286 * Save the initial length of dest: we only want to check against the
1287 * original elements in the inner loop.
1288 */
1289 const guint dest_len = dest->len;
1290
1291 for (s_i = 0; s_i < src->len; s_i++) {
1292 struct ctf_fs_ds_file_group *src_group = g_ptr_array_index(src, s_i);
1293 struct ctf_fs_ds_file_group *dest_group = NULL;
1294
1295 /* A stream instance without ID can't match a stream in the other trace. */
1296 if (src_group->stream_id != -1) {
1297 guint d_i;
1298
1299 /* Let's search for a matching ds_file_group in the destination. */
1300 for (d_i = 0; d_i < dest_len; d_i++) {
1301 struct ctf_fs_ds_file_group *candidate_dest = g_ptr_array_index(dest, d_i);
1302
1303 /* Can't match a stream instance without ID. */
1304 if (candidate_dest->stream_id == -1) {
1305 continue;
1306 }
1307
1308 /*
1309 * If the two groups have the same stream instance id
1310 * and belong to the same stream class (stream instance
1311 * ids are per-stream class), they represent the same
1312 * stream instance.
1313 */
1314 if (candidate_dest->stream_id != src_group->stream_id ||
1315 candidate_dest->sc->id != src_group->sc->id) {
1316 continue;
1317 }
1318
1319 dest_group = candidate_dest;
1320 break;
1321 }
1322 }
1323
1324 /*
1325 * Didn't find a friend in dest to merge our src_group into?
1326 * Create a new empty one. This can happen if a stream was
1327 * active in the source trace chunk but not in the destination
1328 * trace chunk.
1329 */
1330 if (!dest_group) {
1331 struct ctf_stream_class *sc;
1332 struct ctf_fs_ds_index *index;
1333
1334 sc = ctf_trace_class_borrow_stream_class_by_id(
1335 dest_trace->metadata->tc, src_group->sc->id);
1336 BT_ASSERT(sc);
1337
1338 index = ctf_fs_ds_index_create(dest_trace->log_level,
1339 dest_trace->self_comp);
1340 if (!index) {
1341 ret = -1;
1342 goto end;
1343 }
1344
1345 dest_group = ctf_fs_ds_file_group_create(dest_trace, sc,
1346 src_group->stream_id, index);
1347 /* Ownership of index is transferred. */
1348 index = NULL;
1349 if (!dest_group) {
1350 ret = -1;
1351 goto end;
1352 }
1353
1354 g_ptr_array_add(dest_trace->ds_file_groups, dest_group);
1355 }
1356
1357 BT_ASSERT(dest_group);
1358 merge_ctf_fs_ds_file_groups(dest_group, src_group);
1359 }
1360
1361 end:
1362 return ret;
1363 }
1364
1365 /*
1366 * Collapse the given traces, which must all share the same UUID, in a single
1367 * one.
1368 *
1369 * The trace with the most expansive metadata is chosen and all other traces
1370 * are merged into that one. The array slots of all the traces that get merged
1371 * in the chosen one are set to NULL, so only the slot of the chosen trace
1372 * remains non-NULL.
1373 */
1374
1375 static
1376 int merge_ctf_fs_traces(struct ctf_fs_trace **traces, unsigned int num_traces,
1377 struct ctf_fs_trace **out_trace)
1378 {
1379 unsigned int winner_count;
1380 struct ctf_fs_trace *winner;
1381 guint i, winner_i;
1382 int ret = 0;
1383
1384 BT_ASSERT(num_traces >= 2);
1385
1386 winner_count = metadata_count_stream_and_event_classes(traces[0]);
1387 winner = traces[0];
1388 winner_i = 0;
1389
1390 /* Find the trace with the largest metadata. */
1391 for (i = 1; i < num_traces; i++) {
1392 struct ctf_fs_trace *candidate;
1393 unsigned int candidate_count;
1394
1395 candidate = traces[i];
1396
1397 /* A bit of sanity check. */
1398 BT_ASSERT(bt_uuid_compare(winner->metadata->tc->uuid, candidate->metadata->tc->uuid) == 0);
1399
1400 candidate_count = metadata_count_stream_and_event_classes(candidate);
1401
1402 if (candidate_count > winner_count) {
1403 winner_count = candidate_count;
1404 winner = candidate;
1405 winner_i = i;
1406 }
1407 }
1408
1409 /* Merge all the other traces in the winning trace. */
1410 for (i = 0; i < num_traces; i++) {
1411 struct ctf_fs_trace *trace = traces[i];
1412
1413 /* Don't merge the winner into itself. */
1414 if (trace == winner) {
1415 continue;
1416 }
1417
1418 /* Merge trace's data stream file groups into winner's. */
1419 ret = merge_matching_ctf_fs_ds_file_groups(winner, trace);
1420 if (ret) {
1421 goto end;
1422 }
1423 }
1424
1425 /*
1426 * Move the winner out of the array, into `*out_trace`.
1427 */
1428 *out_trace = winner;
1429 traces[winner_i] = NULL;
1430
1431 end:
1432 return ret;
1433 }
1434
1435 enum target_event {
1436 FIRST_EVENT,
1437 LAST_EVENT,
1438 };
1439
1440 static
1441 int decode_clock_snapshot_after_event(struct ctf_fs_trace *ctf_fs_trace,
1442 struct ctf_clock_class *default_cc,
1443 struct ctf_fs_ds_index_entry *index_entry,
1444 enum target_event target_event, uint64_t *cs, int64_t *ts_ns)
1445 {
1446 enum ctf_msg_iter_status iter_status = CTF_MSG_ITER_STATUS_OK;
1447 struct ctf_fs_ds_file *ds_file = NULL;
1448 struct ctf_msg_iter *msg_iter = NULL;
1449 bt_logging_level log_level = ctf_fs_trace->log_level;
1450 bt_self_component *self_comp = ctf_fs_trace->self_comp;
1451 int ret = 0;
1452
1453 BT_ASSERT(ctf_fs_trace);
1454 BT_ASSERT(index_entry);
1455 BT_ASSERT(index_entry->path);
1456
1457 ds_file = ctf_fs_ds_file_create(ctf_fs_trace, NULL,
1458 NULL, index_entry->path, log_level);
1459 if (!ds_file) {
1460 BT_COMP_LOGE_APPEND_CAUSE(self_comp, "Failed to create a ctf_fs_ds_file");
1461 ret = -1;
1462 goto end;
1463 }
1464
1465 BT_ASSERT(ctf_fs_trace->metadata);
1466 BT_ASSERT(ctf_fs_trace->metadata->tc);
1467
1468 msg_iter = ctf_msg_iter_create(ctf_fs_trace->metadata->tc,
1469 bt_common_get_page_size(log_level) * 8, ctf_fs_ds_file_medops,
1470 ds_file, log_level, self_comp, NULL);
1471 if (!msg_iter) {
1472 /* ctf_msg_iter_create() logs errors. */
1473 ret = -1;
1474 goto end;
1475 }
1476
1477 /*
1478 * Turn on dry run mode to prevent the creation and usage of Babeltrace
1479 * library objects (bt_field, bt_message_*, etc.).
1480 */
1481 ctf_msg_iter_set_dry_run(msg_iter, true);
1482
1483 /* Seek to the beginning of the target packet. */
1484 iter_status = ctf_msg_iter_seek(msg_iter, index_entry->offset);
1485 if (iter_status) {
1486 /* ctf_msg_iter_seek() logs errors. */
1487 ret = -1;
1488 goto end;
1489 }
1490
1491 switch (target_event) {
1492 case FIRST_EVENT:
1493 /*
1494 * Start to decode the packet until we reach the end of
1495 * the first event. To extract the first event's clock
1496 * snapshot.
1497 */
1498 iter_status = ctf_msg_iter_curr_packet_first_event_clock_snapshot(
1499 msg_iter, cs);
1500 break;
1501 case LAST_EVENT:
1502 /* Decode the packet to extract the last event's clock snapshot. */
1503 iter_status = ctf_msg_iter_curr_packet_last_event_clock_snapshot(
1504 msg_iter, cs);
1505 break;
1506 default:
1507 bt_common_abort();
1508 }
1509 if (iter_status) {
1510 ret = -1;
1511 goto end;
1512 }
1513
1514 /* Convert clock snapshot to timestamp. */
1515 ret = bt_util_clock_cycles_to_ns_from_origin(*cs,
1516 default_cc->frequency, default_cc->offset_seconds,
1517 default_cc->offset_cycles, ts_ns);
1518 if (ret) {
1519 BT_COMP_LOGE_APPEND_CAUSE(self_comp,
1520 "Failed to convert clock snapshot to timestamp");
1521 goto end;
1522 }
1523
1524 end:
1525 if (ds_file) {
1526 ctf_fs_ds_file_destroy(ds_file);
1527 }
1528 if (msg_iter) {
1529 ctf_msg_iter_destroy(msg_iter);
1530 }
1531
1532 return ret;
1533 }
1534
1535 static
1536 int decode_packet_first_event_timestamp(struct ctf_fs_trace *ctf_fs_trace,
1537 struct ctf_clock_class *default_cc,
1538 struct ctf_fs_ds_index_entry *index_entry, uint64_t *cs, int64_t *ts_ns)
1539 {
1540 return decode_clock_snapshot_after_event(ctf_fs_trace, default_cc,
1541 index_entry, FIRST_EVENT, cs, ts_ns);
1542 }
1543
1544 static
1545 int decode_packet_last_event_timestamp(struct ctf_fs_trace *ctf_fs_trace,
1546 struct ctf_clock_class *default_cc,
1547 struct ctf_fs_ds_index_entry *index_entry, uint64_t *cs, int64_t *ts_ns)
1548 {
1549 return decode_clock_snapshot_after_event(ctf_fs_trace, default_cc,
1550 index_entry, LAST_EVENT, cs, ts_ns);
1551 }
1552
1553 /*
1554 * Fix up packet index entries for lttng's "event-after-packet" bug.
1555 * Some buggy lttng tracer versions may emit events with a timestamp that is
1556 * larger (after) than the timestamp_end of the their packets.
1557 *
1558 * To fix up this erroneous data we do the following:
1559 * 1. If it's not the stream file's last packet: set the packet index entry's
1560 * end time to the next packet's beginning time.
1561 * 2. If it's the stream file's last packet, set the packet index entry's end
1562 * time to the packet's last event's time, if any, or to the packet's
1563 * beginning time otherwise.
1564 *
1565 * Known buggy tracer versions:
1566 * - before lttng-ust 2.11.0
1567 * - before lttng-module 2.11.0
1568 * - before lttng-module 2.10.10
1569 * - before lttng-module 2.9.13
1570 */
1571 static
1572 int fix_index_lttng_event_after_packet_bug(struct ctf_fs_trace *trace)
1573 {
1574 int ret = 0;
1575 guint ds_file_group_i;
1576 GPtrArray *ds_file_groups = trace->ds_file_groups;
1577 bt_logging_level log_level = trace->log_level;
1578
1579 for (ds_file_group_i = 0; ds_file_group_i < ds_file_groups->len;
1580 ds_file_group_i++) {
1581 guint entry_i;
1582 struct ctf_clock_class *default_cc;
1583 struct ctf_fs_ds_index_entry *last_entry;
1584 struct ctf_fs_ds_index *index;
1585
1586 struct ctf_fs_ds_file_group *ds_file_group =
1587 g_ptr_array_index(ds_file_groups, ds_file_group_i);
1588
1589 BT_ASSERT(ds_file_group);
1590 index = ds_file_group->index;
1591
1592 BT_ASSERT(index);
1593 BT_ASSERT(index->entries);
1594 BT_ASSERT(index->entries->len > 0);
1595
1596 /*
1597 * Iterate over all entries but the last one. The last one is
1598 * fixed differently after.
1599 */
1600 for (entry_i = 0; entry_i < index->entries->len - 1;
1601 entry_i++) {
1602 struct ctf_fs_ds_index_entry *curr_entry, *next_entry;
1603
1604 curr_entry = g_ptr_array_index(index->entries, entry_i);
1605 next_entry = g_ptr_array_index(index->entries, entry_i + 1);
1606
1607 /*
1608 * 1. Set the current index entry `end` timestamp to
1609 * the next index entry `begin` timestamp.
1610 */
1611 curr_entry->timestamp_end = next_entry->timestamp_begin;
1612 curr_entry->timestamp_end_ns = next_entry->timestamp_begin_ns;
1613 }
1614
1615 /*
1616 * 2. Fix the last entry by decoding the last event of the last
1617 * packet.
1618 */
1619 last_entry = g_ptr_array_index(index->entries,
1620 index->entries->len - 1);
1621 BT_ASSERT(last_entry);
1622
1623 BT_ASSERT(ds_file_group->sc->default_clock_class);
1624 default_cc = ds_file_group->sc->default_clock_class;
1625
1626 /*
1627 * Decode packet to read the timestamp of the last event of the
1628 * entry.
1629 */
1630 ret = decode_packet_last_event_timestamp(trace, default_cc,
1631 last_entry, &last_entry->timestamp_end,
1632 &last_entry->timestamp_end_ns);
1633 if (ret) {
1634 BT_COMP_LOGE_APPEND_CAUSE(trace->self_comp,
1635 "Failed to decode stream's last packet to get its last event's clock snapshot.");
1636 goto end;
1637 }
1638 }
1639
1640 end:
1641 return ret;
1642 }
1643
1644 /*
1645 * Fix up packet index entries for barectf's "event-before-packet" bug.
1646 * Some buggy barectf tracer versions may emit events with a timestamp that is
1647 * less than the timestamp_begin of the their packets.
1648 *
1649 * To fix up this erroneous data we do the following:
1650 * 1. Starting at the second index entry, set the timestamp_begin of the
1651 * current entry to the timestamp of the first event of the packet.
1652 * 2. Set the previous entry's timestamp_end to the timestamp_begin of the
1653 * current packet.
1654 *
1655 * Known buggy tracer versions:
1656 * - before barectf 2.3.1
1657 */
1658 static
1659 int fix_index_barectf_event_before_packet_bug(struct ctf_fs_trace *trace)
1660 {
1661 int ret = 0;
1662 guint ds_file_group_i;
1663 GPtrArray *ds_file_groups = trace->ds_file_groups;
1664 bt_logging_level log_level = trace->log_level;
1665
1666 for (ds_file_group_i = 0; ds_file_group_i < ds_file_groups->len;
1667 ds_file_group_i++) {
1668 guint entry_i;
1669 struct ctf_clock_class *default_cc;
1670 struct ctf_fs_ds_file_group *ds_file_group =
1671 g_ptr_array_index(ds_file_groups, ds_file_group_i);
1672
1673 struct ctf_fs_ds_index *index = ds_file_group->index;
1674
1675 BT_ASSERT(index);
1676 BT_ASSERT(index->entries);
1677 BT_ASSERT(index->entries->len > 0);
1678
1679 BT_ASSERT(ds_file_group->sc->default_clock_class);
1680 default_cc = ds_file_group->sc->default_clock_class;
1681
1682 /*
1683 * 1. Iterate over the index, starting from the second entry
1684 * (index = 1).
1685 */
1686 for (entry_i = 1; entry_i < index->entries->len;
1687 entry_i++) {
1688 struct ctf_fs_ds_index_entry *curr_entry, *prev_entry;
1689 prev_entry = g_ptr_array_index(index->entries, entry_i - 1);
1690 curr_entry = g_ptr_array_index(index->entries, entry_i);
1691 /*
1692 * 2. Set the current entry `begin` timestamp to the
1693 * timestamp of the first event of the current packet.
1694 */
1695 ret = decode_packet_first_event_timestamp(trace, default_cc,
1696 curr_entry, &curr_entry->timestamp_begin,
1697 &curr_entry->timestamp_begin_ns);
1698 if (ret) {
1699 BT_COMP_LOGE_APPEND_CAUSE(trace->self_comp,
1700 "Failed to decode first event's clock snapshot");
1701 goto end;
1702 }
1703
1704 /*
1705 * 3. Set the previous entry `end` timestamp to the
1706 * timestamp of the first event of the current packet.
1707 */
1708 prev_entry->timestamp_end = curr_entry->timestamp_begin;
1709 prev_entry->timestamp_end_ns = curr_entry->timestamp_begin_ns;
1710 }
1711 }
1712 end:
1713 return ret;
1714 }
1715
1716 /*
1717 * When using the lttng-crash feature it's likely that the last packets of each
1718 * stream have their timestamp_end set to zero. This is caused by the fact that
1719 * the tracer crashed and was not able to properly close the packets.
1720 *
1721 * To fix up this erroneous data we do the following:
1722 * For each index entry, if the entry's timestamp_end is 0 and the
1723 * timestamp_begin is not 0:
1724 * - If it's the stream file's last packet: set the packet index entry's end
1725 * time to the packet's last event's time, if any, or to the packet's
1726 * beginning time otherwise.
1727 * - If it's not the stream file's last packet: set the packet index
1728 * entry's end time to the next packet's beginning time.
1729 *
1730 * Affected versions:
1731 * - All current and future lttng-ust and lttng-modules versions.
1732 */
1733 static
1734 int fix_index_lttng_crash_quirk(struct ctf_fs_trace *trace)
1735 {
1736 int ret = 0;
1737 guint ds_file_group_idx;
1738 GPtrArray *ds_file_groups = trace->ds_file_groups;
1739 bt_logging_level log_level = trace->log_level;
1740
1741 for (ds_file_group_idx = 0; ds_file_group_idx < ds_file_groups->len;
1742 ds_file_group_idx++) {
1743 guint entry_idx;
1744 struct ctf_clock_class *default_cc;
1745 struct ctf_fs_ds_index_entry *last_entry;
1746 struct ctf_fs_ds_index *index;
1747
1748 struct ctf_fs_ds_file_group *ds_file_group =
1749 g_ptr_array_index(ds_file_groups, ds_file_group_idx);
1750
1751 BT_ASSERT(ds_file_group);
1752 index = ds_file_group->index;
1753
1754 BT_ASSERT(ds_file_group->sc->default_clock_class);
1755 default_cc = ds_file_group->sc->default_clock_class;
1756
1757 BT_ASSERT(index);
1758 BT_ASSERT(index->entries);
1759 BT_ASSERT(index->entries->len > 0);
1760
1761 last_entry = g_ptr_array_index(index->entries,
1762 index->entries->len - 1);
1763 BT_ASSERT(last_entry);
1764
1765
1766 /* 1. Fix the last entry first. */
1767 if (last_entry->timestamp_end == 0 &&
1768 last_entry->timestamp_begin != 0) {
1769 /*
1770 * Decode packet to read the timestamp of the
1771 * last event of the stream file.
1772 */
1773 ret = decode_packet_last_event_timestamp(trace,
1774 default_cc, last_entry,
1775 &last_entry->timestamp_end,
1776 &last_entry->timestamp_end_ns);
1777 if (ret) {
1778 BT_COMP_LOGE_APPEND_CAUSE(trace->self_comp,
1779 "Failed to decode last event's clock snapshot");
1780 goto end;
1781 }
1782 }
1783
1784 /* Iterate over all entries but the last one. */
1785 for (entry_idx = 0; entry_idx < index->entries->len - 1;
1786 entry_idx++) {
1787 struct ctf_fs_ds_index_entry *curr_entry, *next_entry;
1788 curr_entry = g_ptr_array_index(index->entries, entry_idx);
1789 next_entry = g_ptr_array_index(index->entries, entry_idx + 1);
1790
1791 if (curr_entry->timestamp_end == 0 &&
1792 curr_entry->timestamp_begin != 0) {
1793 /*
1794 * 2. Set the current index entry `end` timestamp to
1795 * the next index entry `begin` timestamp.
1796 */
1797 curr_entry->timestamp_end = next_entry->timestamp_begin;
1798 curr_entry->timestamp_end_ns = next_entry->timestamp_begin_ns;
1799 }
1800 }
1801 }
1802
1803 end:
1804 return ret;
1805 }
1806
1807 /*
1808 * Extract the tracer information necessary to compare versions.
1809 * Returns 0 on success, and -1 if the extraction is not successful because the
1810 * necessary fields are absents in the trace metadata.
1811 */
1812 static
1813 int extract_tracer_info(struct ctf_fs_trace *trace,
1814 struct tracer_info *current_tracer_info)
1815 {
1816 int ret = 0;
1817 struct ctf_trace_class_env_entry *entry;
1818
1819 /* Clear the current_tracer_info struct */
1820 memset(current_tracer_info, 0, sizeof(*current_tracer_info));
1821
1822 /*
1823 * To compare 2 tracer versions, at least the tracer name and it's
1824 * major version are needed. If one of these is missing, consider it an
1825 * extraction failure.
1826 */
1827 entry = ctf_trace_class_borrow_env_entry_by_name(
1828 trace->metadata->tc, "tracer_name");
1829 if (!entry || entry->type != CTF_TRACE_CLASS_ENV_ENTRY_TYPE_STR) {
1830 goto missing_bare_minimum;
1831 }
1832
1833 /* Set tracer name. */
1834 current_tracer_info->name = entry->value.str->str;
1835
1836 entry = ctf_trace_class_borrow_env_entry_by_name(
1837 trace->metadata->tc, "tracer_major");
1838 if (!entry || entry->type != CTF_TRACE_CLASS_ENV_ENTRY_TYPE_INT) {
1839 goto missing_bare_minimum;
1840 }
1841
1842 /* Set major version number. */
1843 current_tracer_info->major = entry->value.i;
1844
1845 entry = ctf_trace_class_borrow_env_entry_by_name(
1846 trace->metadata->tc, "tracer_minor");
1847 if (!entry || entry->type != CTF_TRACE_CLASS_ENV_ENTRY_TYPE_INT) {
1848 goto end;
1849 }
1850
1851 /* Set minor version number. */
1852 current_tracer_info->minor = entry->value.i;
1853
1854 entry = ctf_trace_class_borrow_env_entry_by_name(
1855 trace->metadata->tc, "tracer_patch");
1856 if (!entry) {
1857 /*
1858 * If `tracer_patch` doesn't exist `tracer_patchlevel` might.
1859 * For example, `lttng-modules` uses entry name
1860 * `tracer_patchlevel`.
1861 */
1862 entry = ctf_trace_class_borrow_env_entry_by_name(
1863 trace->metadata->tc, "tracer_patchlevel");
1864 }
1865
1866 if (!entry || entry->type != CTF_TRACE_CLASS_ENV_ENTRY_TYPE_INT) {
1867 goto end;
1868 }
1869
1870 /* Set patch version number. */
1871 current_tracer_info->patch = entry->value.i;
1872
1873 goto end;
1874
1875 missing_bare_minimum:
1876 ret = -1;
1877 end:
1878 return ret;
1879 }
1880
1881 static
1882 bool is_tracer_affected_by_lttng_event_after_packet_bug(
1883 struct tracer_info *curr_tracer_info)
1884 {
1885 bool is_affected = false;
1886
1887 if (strcmp(curr_tracer_info->name, "lttng-ust") == 0) {
1888 if (curr_tracer_info->major < 2) {
1889 is_affected = true;
1890 } else if (curr_tracer_info->major == 2) {
1891 /* fixed in lttng-ust 2.11.0 */
1892 if (curr_tracer_info->minor < 11) {
1893 is_affected = true;
1894 }
1895 }
1896 } else if (strcmp(curr_tracer_info->name, "lttng-modules") == 0) {
1897 if (curr_tracer_info->major < 2) {
1898 is_affected = true;
1899 } else if (curr_tracer_info->major == 2) {
1900 /* fixed in lttng-modules 2.11.0 */
1901 if (curr_tracer_info->minor == 10) {
1902 /* fixed in lttng-modules 2.10.10 */
1903 if (curr_tracer_info->patch < 10) {
1904 is_affected = true;
1905 }
1906 } else if (curr_tracer_info->minor == 9) {
1907 /* fixed in lttng-modules 2.9.13 */
1908 if (curr_tracer_info->patch < 13) {
1909 is_affected = true;
1910 }
1911 } else if (curr_tracer_info->minor < 9) {
1912 is_affected = true;
1913 }
1914 }
1915 }
1916
1917 return is_affected;
1918 }
1919
1920 static
1921 bool is_tracer_affected_by_barectf_event_before_packet_bug(
1922 struct tracer_info *curr_tracer_info)
1923 {
1924 bool is_affected = false;
1925
1926 if (strcmp(curr_tracer_info->name, "barectf") == 0) {
1927 if (curr_tracer_info->major < 2) {
1928 is_affected = true;
1929 } else if (curr_tracer_info->major == 2) {
1930 if (curr_tracer_info->minor < 3) {
1931 is_affected = true;
1932 } else if (curr_tracer_info->minor == 3) {
1933 /* fixed in barectf 2.3.1 */
1934 if (curr_tracer_info->patch < 1) {
1935 is_affected = true;
1936 }
1937 }
1938 }
1939 }
1940
1941 return is_affected;
1942 }
1943
1944 static
1945 bool is_tracer_affected_by_lttng_crash_quirk(
1946 struct tracer_info *curr_tracer_info)
1947 {
1948 bool is_affected = false;
1949
1950 /* All LTTng tracer may be affected by this lttng crash quirk. */
1951 if (strcmp(curr_tracer_info->name, "lttng-ust") == 0) {
1952 is_affected = true;
1953 } else if (strcmp(curr_tracer_info->name, "lttng-modules") == 0) {
1954 is_affected = true;
1955 }
1956
1957 return is_affected;
1958 }
1959
1960 /*
1961 * Looks for trace produced by known buggy tracers and fix up the index
1962 * produced earlier.
1963 */
1964 static
1965 int fix_packet_index_tracer_bugs(struct ctf_fs_component *ctf_fs,
1966 bt_self_component *self_comp,
1967 bt_self_component_class *self_comp_class)
1968 {
1969 int ret = 0;
1970 struct tracer_info current_tracer_info;
1971 bt_logging_level log_level = ctf_fs->log_level;
1972
1973 ret = extract_tracer_info(ctf_fs->trace, &current_tracer_info);
1974 if (ret) {
1975 /*
1976 * A trace may not have all the necessary environment
1977 * entries to do the tracer version comparison.
1978 * At least, the tracer name and major version number
1979 * are needed. Failing to extract these entries is not
1980 * an error.
1981 */
1982 ret = 0;
1983 BT_LOGI_STR("Cannot extract tracer information necessary to compare with buggy versions.");
1984 goto end;;
1985 }
1986
1987 /* Check if the trace may be affected by old tracer bugs. */
1988 if (is_tracer_affected_by_lttng_event_after_packet_bug(
1989 &current_tracer_info)) {
1990 BT_LOGI_STR("Trace may be affected by LTTng tracer packet timestamp bug. Fixing up.");
1991 ret = fix_index_lttng_event_after_packet_bug(ctf_fs->trace);
1992 if (ret) {
1993 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(
1994 self_comp, self_comp_class,
1995 "Failed to fix LTTng event-after-packet bug.");
1996 goto end;
1997 }
1998 ctf_fs->trace->metadata->tc->quirks.lttng_event_after_packet = true;
1999 }
2000
2001 if (is_tracer_affected_by_barectf_event_before_packet_bug(
2002 &current_tracer_info)) {
2003 BT_LOGI_STR("Trace may be affected by barectf tracer packet timestamp bug. Fixing up.");
2004 ret = fix_index_barectf_event_before_packet_bug(ctf_fs->trace);
2005 if (ret) {
2006 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(
2007 self_comp, self_comp_class,
2008 "Failed to fix barectf event-before-packet bug.");
2009 goto end;
2010 }
2011 ctf_fs->trace->metadata->tc->quirks.barectf_event_before_packet = true;
2012 }
2013
2014 if (is_tracer_affected_by_lttng_crash_quirk(
2015 &current_tracer_info)) {
2016 ret = fix_index_lttng_crash_quirk(ctf_fs->trace);
2017 if (ret) {
2018 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(
2019 self_comp, self_comp_class,
2020 "Failed to fix lttng-crash timestamp quirks.");
2021 goto end;
2022 }
2023 ctf_fs->trace->metadata->tc->quirks.lttng_crash = true;
2024 }
2025
2026 end:
2027 return ret;
2028 }
2029
2030 static
2031 gint compare_ds_file_groups_by_first_path(gconstpointer a, gconstpointer b)
2032 {
2033 struct ctf_fs_ds_file_group * const *ds_file_group_a = a;
2034 struct ctf_fs_ds_file_group * const *ds_file_group_b = b;
2035 const struct ctf_fs_ds_file_info *first_ds_file_info_a;
2036 const struct ctf_fs_ds_file_info *first_ds_file_info_b;
2037
2038 BT_ASSERT((*ds_file_group_a)->ds_file_infos->len > 0);
2039 BT_ASSERT((*ds_file_group_b)->ds_file_infos->len > 0);
2040 first_ds_file_info_a = (*ds_file_group_a)->ds_file_infos->pdata[0];
2041 first_ds_file_info_b = (*ds_file_group_b)->ds_file_infos->pdata[0];
2042 return strcmp(first_ds_file_info_a->path->str,
2043 first_ds_file_info_b->path->str);
2044 }
2045
2046 int ctf_fs_component_create_ctf_fs_trace(
2047 struct ctf_fs_component *ctf_fs,
2048 const bt_value *paths_value,
2049 const bt_value *trace_name_value,
2050 bt_self_component *self_comp,
2051 bt_self_component_class *self_comp_class)
2052 {
2053 int ret = 0;
2054 uint64_t i;
2055 bt_logging_level log_level = ctf_fs->log_level;
2056 GPtrArray *traces;
2057 const char *trace_name;
2058
2059 BT_ASSERT(bt_value_get_type(paths_value) == BT_VALUE_TYPE_ARRAY);
2060 BT_ASSERT(!bt_value_array_is_empty(paths_value));
2061
2062 traces = g_ptr_array_new_with_free_func(ctf_fs_trace_destroy_notifier);
2063 if (!traces) {
2064 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
2065 "Failed to allocate a GPtrArray.");
2066 goto error;
2067 }
2068
2069 trace_name = trace_name_value ? bt_value_string_get(trace_name_value) : NULL;
2070
2071 /* Start by creating a separate ctf_fs_trace object for each path. */
2072 for (i = 0; i < bt_value_array_get_length(paths_value); i++) {
2073 const bt_value *path_value = bt_value_array_borrow_element_by_index_const(paths_value, i);
2074 const char *input = bt_value_string_get(path_value);
2075
2076 ret = ctf_fs_component_create_ctf_fs_trace_one_path(ctf_fs,
2077 input, trace_name, traces, self_comp, self_comp_class);
2078 if (ret) {
2079 goto end;
2080 }
2081 }
2082
2083 if (traces->len > 1) {
2084 struct ctf_fs_trace *first_trace = (struct ctf_fs_trace *) traces->pdata[0];
2085 const uint8_t *first_trace_uuid = first_trace->metadata->tc->uuid;
2086 struct ctf_fs_trace *trace;
2087
2088 /*
2089 * We have more than one trace, they must all share the same
2090 * UUID, verify that.
2091 */
2092 for (i = 0; i < traces->len; i++) {
2093 struct ctf_fs_trace *this_trace =
2094 (struct ctf_fs_trace *) traces->pdata[i];
2095 const uint8_t *this_trace_uuid = this_trace->metadata->tc->uuid;
2096
2097 if (!this_trace->metadata->tc->is_uuid_set) {
2098 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
2099 "Multiple traces given, but a trace does not have a UUID: path=%s",
2100 this_trace->path->str);
2101 goto error;
2102 }
2103
2104 if (bt_uuid_compare(first_trace_uuid, this_trace_uuid) != 0) {
2105 char first_trace_uuid_str[BT_UUID_STR_LEN + 1];
2106 char this_trace_uuid_str[BT_UUID_STR_LEN + 1];
2107
2108 bt_uuid_to_str(first_trace_uuid, first_trace_uuid_str);
2109 bt_uuid_to_str(this_trace_uuid, this_trace_uuid_str);
2110
2111 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
2112 "Multiple traces given, but UUIDs don't match: "
2113 "first-trace-uuid=%s, first-trace-path=%s, "
2114 "trace-uuid=%s, trace-path=%s",
2115 first_trace_uuid_str, first_trace->path->str,
2116 this_trace_uuid_str, this_trace->path->str);
2117 goto error;
2118 }
2119 }
2120
2121 ret = merge_ctf_fs_traces((struct ctf_fs_trace **) traces->pdata,
2122 traces->len, &trace);
2123 if (ret) {
2124 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
2125 "Failed to merge traces with the same UUID.");
2126 goto error;
2127 }
2128
2129 ctf_fs->trace = trace;
2130 } else {
2131 /* Just one trace, it may or may not have a UUID, both are fine. */
2132 ctf_fs->trace = traces->pdata[0];
2133 traces->pdata[0] = NULL;
2134 }
2135
2136 ret = fix_packet_index_tracer_bugs(ctf_fs, self_comp, self_comp_class);
2137 if (ret) {
2138 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
2139 "Failed to fix packet index tracer bugs.");
2140 }
2141
2142 /*
2143 * Sort data stream file groups by first data stream file info
2144 * path to get a deterministic order. This order influences the
2145 * order of the output ports. It also influences the order of
2146 * the automatic stream IDs if the trace's packet headers do not
2147 * contain a `stream_instance_id` field, in which case the data
2148 * stream file to stream ID association is always the same,
2149 * whatever the build and the system.
2150 *
2151 * Having a deterministic order here can help debugging and
2152 * testing.
2153 */
2154 g_ptr_array_sort(ctf_fs->trace->ds_file_groups,
2155 compare_ds_file_groups_by_first_path);
2156 goto end;
2157 error:
2158 ret = -1;
2159
2160 end:
2161 g_ptr_array_free(traces, TRUE);
2162 return ret;
2163 }
2164
2165 static
2166 GString *get_stream_instance_unique_name(
2167 struct ctf_fs_ds_file_group *ds_file_group)
2168 {
2169 GString *name;
2170 struct ctf_fs_ds_file_info *ds_file_info;
2171
2172 name = g_string_new(NULL);
2173 if (!name) {
2174 goto end;
2175 }
2176
2177 /*
2178 * If there's more than one stream file in the stream file
2179 * group, the first (earliest) stream file's path is used as
2180 * the stream's unique name.
2181 */
2182 BT_ASSERT(ds_file_group->ds_file_infos->len > 0);
2183 ds_file_info = g_ptr_array_index(ds_file_group->ds_file_infos, 0);
2184 g_string_assign(name, ds_file_info->path->str);
2185
2186 end:
2187 return name;
2188 }
2189
2190 /* Create the IR stream objects for ctf_fs_trace. */
2191
2192 static
2193 int create_streams_for_trace(struct ctf_fs_trace *ctf_fs_trace)
2194 {
2195 int ret;
2196 GString *name = NULL;
2197 guint i;
2198 bt_logging_level log_level = ctf_fs_trace->log_level;
2199 bt_self_component *self_comp = ctf_fs_trace->self_comp;
2200
2201 for (i = 0; i < ctf_fs_trace->ds_file_groups->len; i++) {
2202 struct ctf_fs_ds_file_group *ds_file_group =
2203 g_ptr_array_index(ctf_fs_trace->ds_file_groups, i);
2204 name = get_stream_instance_unique_name(ds_file_group);
2205
2206 if (!name) {
2207 goto error;
2208 }
2209
2210 if (ds_file_group->sc->ir_sc) {
2211 BT_ASSERT(ctf_fs_trace->trace);
2212
2213 if (ds_file_group->stream_id == UINT64_C(-1)) {
2214 /* No stream ID: use 0 */
2215 ds_file_group->stream = bt_stream_create_with_id(
2216 ds_file_group->sc->ir_sc,
2217 ctf_fs_trace->trace,
2218 ctf_fs_trace->next_stream_id);
2219 ctf_fs_trace->next_stream_id++;
2220 } else {
2221 /* Specific stream ID */
2222 ds_file_group->stream = bt_stream_create_with_id(
2223 ds_file_group->sc->ir_sc,
2224 ctf_fs_trace->trace,
2225 (uint64_t) ds_file_group->stream_id);
2226 }
2227 } else {
2228 ds_file_group->stream = NULL;
2229 }
2230
2231 if (!ds_file_group->stream) {
2232 BT_COMP_LOGE_APPEND_CAUSE(self_comp,
2233 "Cannot create stream for DS file group: "
2234 "addr=%p, stream-name=\"%s\"",
2235 ds_file_group, name->str);
2236 goto error;
2237 }
2238
2239 ret = bt_stream_set_name(ds_file_group->stream,
2240 name->str);
2241 if (ret) {
2242 BT_COMP_LOGE_APPEND_CAUSE(self_comp, "Cannot set stream's name: "
2243 "addr=%p, stream-name=\"%s\"",
2244 ds_file_group->stream, name->str);
2245 goto error;
2246 }
2247
2248 g_string_free(name, TRUE);
2249 name = NULL;
2250 }
2251
2252 ret = 0;
2253 goto end;
2254
2255 error:
2256 ret = -1;
2257
2258 end:
2259
2260 if (name) {
2261 g_string_free(name, TRUE);
2262 }
2263 return ret;
2264 }
2265
2266 static const struct bt_param_validation_value_descr inputs_elem_descr = {
2267 .type = BT_VALUE_TYPE_STRING,
2268 };
2269
2270 static const struct bt_param_validation_map_value_entry_descr fs_params_entries_descr[] = {
2271 { "inputs", BT_PARAM_VALIDATION_MAP_VALUE_ENTRY_MANDATORY, {
2272 BT_VALUE_TYPE_ARRAY,
2273 .array = {
2274 .min_length = 1,
2275 .max_length = BT_PARAM_VALIDATION_INFINITE,
2276 .element_type = &inputs_elem_descr,
2277 }
2278 }},
2279 { "trace-name", BT_PARAM_VALIDATION_MAP_VALUE_ENTRY_OPTIONAL, { .type = BT_VALUE_TYPE_STRING } },
2280 { "clock-class-offset-s", BT_PARAM_VALIDATION_MAP_VALUE_ENTRY_OPTIONAL, { .type = BT_VALUE_TYPE_SIGNED_INTEGER } },
2281 { "clock-class-offset-ns", BT_PARAM_VALIDATION_MAP_VALUE_ENTRY_OPTIONAL, { .type = BT_VALUE_TYPE_SIGNED_INTEGER } },
2282 { "force-clock-class-origin-unix-epoch", BT_PARAM_VALIDATION_MAP_VALUE_ENTRY_OPTIONAL, { .type = BT_VALUE_TYPE_BOOL } },
2283 BT_PARAM_VALIDATION_MAP_VALUE_ENTRY_END
2284 };
2285
2286
2287 bool read_src_fs_parameters(const bt_value *params,
2288 const bt_value **inputs,
2289 const bt_value **trace_name,
2290 struct ctf_fs_component *ctf_fs,
2291 bt_self_component *self_comp,
2292 bt_self_component_class *self_comp_class) {
2293 bool ret;
2294 const bt_value *value;
2295 bt_logging_level log_level = ctf_fs->log_level;
2296 enum bt_param_validation_status validate_value_status;
2297 gchar *error = NULL;
2298
2299 validate_value_status = bt_param_validation_validate(params,
2300 fs_params_entries_descr, &error);
2301 if (validate_value_status != BT_PARAM_VALIDATION_STATUS_OK) {
2302 BT_COMP_OR_COMP_CLASS_LOGE_APPEND_CAUSE(self_comp, self_comp_class,
2303 "%s", error);
2304 ret = false;
2305 goto end;
2306 }
2307
2308 /* inputs parameter */
2309 *inputs = bt_value_map_borrow_entry_value_const(params, "inputs");
2310
2311 /* clock-class-offset-s parameter */
2312 value = bt_value_map_borrow_entry_value_const(params,
2313 "clock-class-offset-s");
2314 if (value) {
2315 ctf_fs->metadata_config.clock_class_offset_s =
2316 bt_value_integer_signed_get(value);
2317 }
2318
2319 /* clock-class-offset-ns parameter */
2320 value = bt_value_map_borrow_entry_value_const(params,
2321 "clock-class-offset-ns");
2322 if (value) {
2323 ctf_fs->metadata_config.clock_class_offset_ns =
2324 bt_value_integer_signed_get(value);
2325 }
2326
2327 /* force-clock-class-origin-unix-epoch parameter */
2328 value = bt_value_map_borrow_entry_value_const(params,
2329 "force-clock-class-origin-unix-epoch");
2330 if (value) {
2331 ctf_fs->metadata_config.force_clock_class_origin_unix_epoch =
2332 bt_value_bool_get(value);
2333 }
2334
2335 /* trace-name parameter */
2336 *trace_name = bt_value_map_borrow_entry_value_const(params, "trace-name");
2337
2338 ret = true;
2339
2340 end:
2341 g_free(error);
2342 return ret;
2343 }
2344
2345 static
2346 struct ctf_fs_component *ctf_fs_create(
2347 const bt_value *params,
2348 bt_self_component_source *self_comp_src)
2349 {
2350 struct ctf_fs_component *ctf_fs = NULL;
2351 const bt_value *inputs_value;
2352 const bt_value *trace_name_value;
2353 bt_self_component *self_comp =
2354 bt_self_component_source_as_self_component(self_comp_src);
2355
2356 ctf_fs = ctf_fs_component_create(bt_component_get_logging_level(
2357 bt_self_component_as_component(self_comp)), self_comp);
2358 if (!ctf_fs) {
2359 goto error;
2360 }
2361
2362 if (!read_src_fs_parameters(params, &inputs_value, &trace_name_value,
2363 ctf_fs, self_comp, NULL)) {
2364 goto error;
2365 }
2366
2367 bt_self_component_set_data(self_comp, ctf_fs);
2368
2369 if (ctf_fs_component_create_ctf_fs_trace(ctf_fs, inputs_value,
2370 trace_name_value, self_comp, NULL)) {
2371 goto error;
2372 }
2373
2374 if (create_streams_for_trace(ctf_fs->trace)) {
2375 goto error;
2376 }
2377
2378 if (create_ports_for_trace(ctf_fs, ctf_fs->trace, self_comp_src)) {
2379 goto error;
2380 }
2381
2382 goto end;
2383
2384 error:
2385 ctf_fs_destroy(ctf_fs);
2386 ctf_fs = NULL;
2387 bt_self_component_set_data(self_comp, NULL);
2388
2389 end:
2390 return ctf_fs;
2391 }
2392
2393 BT_HIDDEN
2394 bt_component_class_initialize_method_status ctf_fs_init(
2395 bt_self_component_source *self_comp_src,
2396 bt_self_component_source_configuration *config,
2397 const bt_value *params, __attribute__((unused)) void *init_method_data)
2398 {
2399 struct ctf_fs_component *ctf_fs;
2400 bt_component_class_initialize_method_status ret =
2401 BT_COMPONENT_CLASS_INITIALIZE_METHOD_STATUS_OK;
2402
2403 ctf_fs = ctf_fs_create(params, self_comp_src);
2404 if (!ctf_fs) {
2405 ret = BT_COMPONENT_CLASS_INITIALIZE_METHOD_STATUS_ERROR;
2406 }
2407
2408 return ret;
2409 }
2410
2411 BT_HIDDEN
2412 bt_component_class_query_method_status ctf_fs_query(
2413 bt_self_component_class_source *comp_class,
2414 bt_private_query_executor *priv_query_exec,
2415 const char *object, const bt_value *params,
2416 __attribute__((unused)) void *method_data,
2417 const bt_value **result)
2418 {
2419 bt_component_class_query_method_status status =
2420 BT_COMPONENT_CLASS_QUERY_METHOD_STATUS_OK;
2421 bt_logging_level log_level = bt_query_executor_get_logging_level(
2422 bt_private_query_executor_as_query_executor_const(
2423 priv_query_exec));
2424
2425 if (strcmp(object, "metadata-info") == 0) {
2426 status = metadata_info_query(comp_class, params, log_level,
2427 result);
2428 } else if (strcmp(object, "babeltrace.trace-infos") == 0) {
2429 status = trace_infos_query(comp_class, params, log_level,
2430 result);
2431 } else if (!strcmp(object, "babeltrace.support-info")) {
2432 status = support_info_query(comp_class, params, log_level, result);
2433 } else {
2434 BT_LOGE("Unknown query object `%s`", object);
2435 status = BT_COMPONENT_CLASS_QUERY_METHOD_STATUS_UNKNOWN_OBJECT;
2436 goto end;
2437 }
2438 end:
2439 return status;
2440 }
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