Port: Remove _GNU_SOURCE, defined in config.h
[lttng-tools.git] / src / bin / lttng-relayd / main.c
1 /*
2 * Copyright (C) 2012 - Julien Desfossez <jdesfossez@efficios.com>
3 * David Goulet <dgoulet@efficios.com>
4 * 2013 - Jérémie Galarneau <jeremie.galarneau@efficios.com>
5 * 2015 - Mathieu Desnoyers <mathieu.desnoyers@efficios.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, version 2 only,
9 * as published by the Free Software Foundation.
10 *
11 * This program is distributed in the hope that it will be useful, but WITHOUT
12 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
14 * more details.
15 *
16 * You should have received a copy of the GNU General Public License along
17 * with this program; if not, write to the Free Software Foundation, Inc.,
18 * 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
19 */
20
21 #define _LGPL_SOURCE
22 #include <getopt.h>
23 #include <grp.h>
24 #include <limits.h>
25 #include <pthread.h>
26 #include <signal.h>
27 #include <stdio.h>
28 #include <stdlib.h>
29 #include <string.h>
30 #include <sys/mman.h>
31 #include <sys/mount.h>
32 #include <sys/resource.h>
33 #include <sys/socket.h>
34 #include <sys/stat.h>
35 #include <sys/types.h>
36 #include <sys/wait.h>
37 #include <inttypes.h>
38 #include <urcu/futex.h>
39 #include <urcu/uatomic.h>
40 #include <unistd.h>
41 #include <fcntl.h>
42
43 #include <lttng/lttng.h>
44 #include <common/common.h>
45 #include <common/compat/poll.h>
46 #include <common/compat/socket.h>
47 #include <common/compat/endian.h>
48 #include <common/compat/getenv.h>
49 #include <common/defaults.h>
50 #include <common/daemonize.h>
51 #include <common/futex.h>
52 #include <common/sessiond-comm/sessiond-comm.h>
53 #include <common/sessiond-comm/inet.h>
54 #include <common/sessiond-comm/relayd.h>
55 #include <common/uri.h>
56 #include <common/utils.h>
57 #include <common/config/config.h>
58 #include <urcu/rculist.h>
59
60 #include "cmd.h"
61 #include "ctf-trace.h"
62 #include "index.h"
63 #include "utils.h"
64 #include "lttng-relayd.h"
65 #include "live.h"
66 #include "health-relayd.h"
67 #include "testpoint.h"
68 #include "viewer-stream.h"
69 #include "session.h"
70 #include "stream.h"
71 #include "connection.h"
72 #include "tracefile-array.h"
73
74 /* command line options */
75 char *opt_output_path;
76 static int opt_daemon, opt_background;
77
78 /*
79 * We need to wait for listener and live listener threads, as well as
80 * health check thread, before being ready to signal readiness.
81 */
82 #define NR_LTTNG_RELAY_READY 3
83 static int lttng_relay_ready = NR_LTTNG_RELAY_READY;
84 static int recv_child_signal; /* Set to 1 when a SIGUSR1 signal is received. */
85 static pid_t child_ppid; /* Internal parent PID use with daemonize. */
86
87 static struct lttng_uri *control_uri;
88 static struct lttng_uri *data_uri;
89 static struct lttng_uri *live_uri;
90
91 const char *progname;
92
93 const char *tracing_group_name = DEFAULT_TRACING_GROUP;
94 static int tracing_group_name_override;
95
96 const char * const config_section_name = "relayd";
97
98 /*
99 * Quit pipe for all threads. This permits a single cancellation point
100 * for all threads when receiving an event on the pipe.
101 */
102 int thread_quit_pipe[2] = { -1, -1 };
103
104 /*
105 * This pipe is used to inform the worker thread that a command is queued and
106 * ready to be processed.
107 */
108 static int relay_conn_pipe[2] = { -1, -1 };
109
110 /* Shared between threads */
111 static int dispatch_thread_exit;
112
113 static pthread_t listener_thread;
114 static pthread_t dispatcher_thread;
115 static pthread_t worker_thread;
116 static pthread_t health_thread;
117
118 /*
119 * last_relay_stream_id_lock protects last_relay_stream_id increment
120 * atomicity on 32-bit architectures.
121 */
122 static pthread_mutex_t last_relay_stream_id_lock = PTHREAD_MUTEX_INITIALIZER;
123 static uint64_t last_relay_stream_id;
124
125 /*
126 * Relay command queue.
127 *
128 * The relay_thread_listener and relay_thread_dispatcher communicate with this
129 * queue.
130 */
131 static struct relay_conn_queue relay_conn_queue;
132
133 /* buffer allocated at startup, used to store the trace data */
134 static char *data_buffer;
135 static unsigned int data_buffer_size;
136
137 /* Global relay stream hash table. */
138 struct lttng_ht *relay_streams_ht;
139
140 /* Global relay viewer stream hash table. */
141 struct lttng_ht *viewer_streams_ht;
142
143 /* Global relay sessions hash table. */
144 struct lttng_ht *sessions_ht;
145
146 /* Relayd health monitoring */
147 struct health_app *health_relayd;
148
149 static struct option long_options[] = {
150 { "control-port", 1, 0, 'C', },
151 { "data-port", 1, 0, 'D', },
152 { "live-port", 1, 0, 'L', },
153 { "daemonize", 0, 0, 'd', },
154 { "background", 0, 0, 'b', },
155 { "group", 1, 0, 'g', },
156 { "help", 0, 0, 'h', },
157 { "output", 1, 0, 'o', },
158 { "verbose", 0, 0, 'v', },
159 { "config", 1, 0, 'f' },
160 { NULL, 0, 0, 0, },
161 };
162
163 static const char *config_ignore_options[] = { "help", "config" };
164
165 /*
166 * usage function on stderr
167 */
168 static void usage(void)
169 {
170 fprintf(stderr, "Usage: %s OPTIONS\n\nOptions:\n", progname);
171 fprintf(stderr, " -h, --help Display this usage.\n");
172 fprintf(stderr, " -d, --daemonize Start as a daemon.\n");
173 fprintf(stderr, " -b, --background Start as a daemon, keeping console open.\n");
174 fprintf(stderr, " -C, --control-port URL Control port listening.\n");
175 fprintf(stderr, " -D, --data-port URL Data port listening.\n");
176 fprintf(stderr, " -L, --live-port URL Live view port listening.\n");
177 fprintf(stderr, " -o, --output PATH Output path for traces. Must use an absolute path.\n");
178 fprintf(stderr, " -v, --verbose Verbose mode. Activate DBG() macro.\n");
179 fprintf(stderr, " -g, --group NAME Specify the tracing group name. (default: tracing)\n");
180 fprintf(stderr, " -f --config Load daemon configuration file\n");
181 }
182
183 /*
184 * Take an option from the getopt output and set it in the right variable to be
185 * used later.
186 *
187 * Return 0 on success else a negative value.
188 */
189 static int set_option(int opt, const char *arg, const char *optname)
190 {
191 int ret;
192
193 switch (opt) {
194 case 0:
195 fprintf(stderr, "option %s", optname);
196 if (arg) {
197 fprintf(stderr, " with arg %s\n", arg);
198 }
199 break;
200 case 'C':
201 if (lttng_is_setuid_setgid()) {
202 WARN("Getting '%s' argument from setuid/setgid binary refused for security reasons.",
203 "-C, --control-port");
204 } else {
205 ret = uri_parse(arg, &control_uri);
206 if (ret < 0) {
207 ERR("Invalid control URI specified");
208 goto end;
209 }
210 if (control_uri->port == 0) {
211 control_uri->port = DEFAULT_NETWORK_CONTROL_PORT;
212 }
213 }
214 break;
215 case 'D':
216 if (lttng_is_setuid_setgid()) {
217 WARN("Getting '%s' argument from setuid/setgid binary refused for security reasons.",
218 "-D, -data-port");
219 } else {
220 ret = uri_parse(arg, &data_uri);
221 if (ret < 0) {
222 ERR("Invalid data URI specified");
223 goto end;
224 }
225 if (data_uri->port == 0) {
226 data_uri->port = DEFAULT_NETWORK_DATA_PORT;
227 }
228 }
229 break;
230 case 'L':
231 if (lttng_is_setuid_setgid()) {
232 WARN("Getting '%s' argument from setuid/setgid binary refused for security reasons.",
233 "-L, -live-port");
234 } else {
235 ret = uri_parse(arg, &live_uri);
236 if (ret < 0) {
237 ERR("Invalid live URI specified");
238 goto end;
239 }
240 if (live_uri->port == 0) {
241 live_uri->port = DEFAULT_NETWORK_VIEWER_PORT;
242 }
243 }
244 break;
245 case 'd':
246 opt_daemon = 1;
247 break;
248 case 'b':
249 opt_background = 1;
250 break;
251 case 'g':
252 if (lttng_is_setuid_setgid()) {
253 WARN("Getting '%s' argument from setuid/setgid binary refused for security reasons.",
254 "-g, --group");
255 } else {
256 tracing_group_name = strdup(arg);
257 if (tracing_group_name == NULL) {
258 ret = -errno;
259 PERROR("strdup");
260 goto end;
261 }
262 tracing_group_name_override = 1;
263 }
264 break;
265 case 'h':
266 usage();
267 exit(EXIT_FAILURE);
268 case 'o':
269 if (lttng_is_setuid_setgid()) {
270 WARN("Getting '%s' argument from setuid/setgid binary refused for security reasons.",
271 "-o, --output");
272 } else {
273 ret = asprintf(&opt_output_path, "%s", arg);
274 if (ret < 0) {
275 ret = -errno;
276 PERROR("asprintf opt_output_path");
277 goto end;
278 }
279 }
280 break;
281 case 'v':
282 /* Verbose level can increase using multiple -v */
283 if (arg) {
284 lttng_opt_verbose = config_parse_value(arg);
285 } else {
286 /* Only 3 level of verbosity (-vvv). */
287 if (lttng_opt_verbose < 3) {
288 lttng_opt_verbose += 1;
289 }
290 }
291 break;
292 default:
293 /* Unknown option or other error.
294 * Error is printed by getopt, just return */
295 ret = -1;
296 goto end;
297 }
298
299 /* All good. */
300 ret = 0;
301
302 end:
303 return ret;
304 }
305
306 /*
307 * config_entry_handler_cb used to handle options read from a config file.
308 * See config_entry_handler_cb comment in common/config/config.h for the
309 * return value conventions.
310 */
311 static int config_entry_handler(const struct config_entry *entry, void *unused)
312 {
313 int ret = 0, i;
314
315 if (!entry || !entry->name || !entry->value) {
316 ret = -EINVAL;
317 goto end;
318 }
319
320 /* Check if the option is to be ignored */
321 for (i = 0; i < sizeof(config_ignore_options) / sizeof(char *); i++) {
322 if (!strcmp(entry->name, config_ignore_options[i])) {
323 goto end;
324 }
325 }
326
327 for (i = 0; i < (sizeof(long_options) / sizeof(struct option)) - 1; i++) {
328 /* Ignore if entry name is not fully matched. */
329 if (strcmp(entry->name, long_options[i].name)) {
330 continue;
331 }
332
333 /*
334 * If the option takes no argument on the command line,
335 * we have to check if the value is "true". We support
336 * non-zero numeric values, true, on and yes.
337 */
338 if (!long_options[i].has_arg) {
339 ret = config_parse_value(entry->value);
340 if (ret <= 0) {
341 if (ret) {
342 WARN("Invalid configuration value \"%s\" for option %s",
343 entry->value, entry->name);
344 }
345 /* False, skip boolean config option. */
346 goto end;
347 }
348 }
349
350 ret = set_option(long_options[i].val, entry->value, entry->name);
351 goto end;
352 }
353
354 WARN("Unrecognized option \"%s\" in daemon configuration file.",
355 entry->name);
356
357 end:
358 return ret;
359 }
360
361 static int set_options(int argc, char **argv)
362 {
363 int c, ret = 0, option_index = 0, retval = 0;
364 int orig_optopt = optopt, orig_optind = optind;
365 char *default_address, *optstring;
366 const char *config_path = NULL;
367
368 optstring = utils_generate_optstring(long_options,
369 sizeof(long_options) / sizeof(struct option));
370 if (!optstring) {
371 retval = -ENOMEM;
372 goto exit;
373 }
374
375 /* Check for the --config option */
376
377 while ((c = getopt_long(argc, argv, optstring, long_options,
378 &option_index)) != -1) {
379 if (c == '?') {
380 retval = -EINVAL;
381 goto exit;
382 } else if (c != 'f') {
383 continue;
384 }
385
386 if (lttng_is_setuid_setgid()) {
387 WARN("Getting '%s' argument from setuid/setgid binary refused for security reasons.",
388 "-f, --config");
389 } else {
390 config_path = utils_expand_path(optarg);
391 if (!config_path) {
392 ERR("Failed to resolve path: %s", optarg);
393 }
394 }
395 }
396
397 ret = config_get_section_entries(config_path, config_section_name,
398 config_entry_handler, NULL);
399 if (ret) {
400 if (ret > 0) {
401 ERR("Invalid configuration option at line %i", ret);
402 }
403 retval = -1;
404 goto exit;
405 }
406
407 /* Reset getopt's global state */
408 optopt = orig_optopt;
409 optind = orig_optind;
410 while (1) {
411 c = getopt_long(argc, argv, optstring, long_options, &option_index);
412 if (c == -1) {
413 break;
414 }
415
416 ret = set_option(c, optarg, long_options[option_index].name);
417 if (ret < 0) {
418 retval = -1;
419 goto exit;
420 }
421 }
422
423 /* assign default values */
424 if (control_uri == NULL) {
425 ret = asprintf(&default_address,
426 "tcp://" DEFAULT_NETWORK_CONTROL_BIND_ADDRESS ":%d",
427 DEFAULT_NETWORK_CONTROL_PORT);
428 if (ret < 0) {
429 PERROR("asprintf default data address");
430 retval = -1;
431 goto exit;
432 }
433
434 ret = uri_parse(default_address, &control_uri);
435 free(default_address);
436 if (ret < 0) {
437 ERR("Invalid control URI specified");
438 retval = -1;
439 goto exit;
440 }
441 }
442 if (data_uri == NULL) {
443 ret = asprintf(&default_address,
444 "tcp://" DEFAULT_NETWORK_DATA_BIND_ADDRESS ":%d",
445 DEFAULT_NETWORK_DATA_PORT);
446 if (ret < 0) {
447 PERROR("asprintf default data address");
448 retval = -1;
449 goto exit;
450 }
451
452 ret = uri_parse(default_address, &data_uri);
453 free(default_address);
454 if (ret < 0) {
455 ERR("Invalid data URI specified");
456 retval = -1;
457 goto exit;
458 }
459 }
460 if (live_uri == NULL) {
461 ret = asprintf(&default_address,
462 "tcp://" DEFAULT_NETWORK_VIEWER_BIND_ADDRESS ":%d",
463 DEFAULT_NETWORK_VIEWER_PORT);
464 if (ret < 0) {
465 PERROR("asprintf default viewer control address");
466 retval = -1;
467 goto exit;
468 }
469
470 ret = uri_parse(default_address, &live_uri);
471 free(default_address);
472 if (ret < 0) {
473 ERR("Invalid viewer control URI specified");
474 retval = -1;
475 goto exit;
476 }
477 }
478
479 exit:
480 free(optstring);
481 return retval;
482 }
483
484 static void print_global_objects(void)
485 {
486 rcu_register_thread();
487
488 print_viewer_streams();
489 print_relay_streams();
490 print_sessions();
491
492 rcu_unregister_thread();
493 }
494
495 /*
496 * Cleanup the daemon
497 */
498 static void relayd_cleanup(void)
499 {
500 print_global_objects();
501
502 DBG("Cleaning up");
503
504 if (viewer_streams_ht)
505 lttng_ht_destroy(viewer_streams_ht);
506 if (relay_streams_ht)
507 lttng_ht_destroy(relay_streams_ht);
508 if (sessions_ht)
509 lttng_ht_destroy(sessions_ht);
510
511 /* free the dynamically allocated opt_output_path */
512 free(opt_output_path);
513
514 /* Close thread quit pipes */
515 utils_close_pipe(thread_quit_pipe);
516
517 uri_free(control_uri);
518 uri_free(data_uri);
519 /* Live URI is freed in the live thread. */
520
521 if (tracing_group_name_override) {
522 free((void *) tracing_group_name);
523 }
524 }
525
526 /*
527 * Write to writable pipe used to notify a thread.
528 */
529 static int notify_thread_pipe(int wpipe)
530 {
531 ssize_t ret;
532
533 ret = lttng_write(wpipe, "!", 1);
534 if (ret < 1) {
535 PERROR("write poll pipe");
536 goto end;
537 }
538 ret = 0;
539 end:
540 return ret;
541 }
542
543 static int notify_health_quit_pipe(int *pipe)
544 {
545 ssize_t ret;
546
547 ret = lttng_write(pipe[1], "4", 1);
548 if (ret < 1) {
549 PERROR("write relay health quit");
550 goto end;
551 }
552 ret = 0;
553 end:
554 return ret;
555 }
556
557 /*
558 * Stop all relayd and relayd-live threads.
559 */
560 int lttng_relay_stop_threads(void)
561 {
562 int retval = 0;
563
564 /* Stopping all threads */
565 DBG("Terminating all threads");
566 if (notify_thread_pipe(thread_quit_pipe[1])) {
567 ERR("write error on thread quit pipe");
568 retval = -1;
569 }
570
571 if (notify_health_quit_pipe(health_quit_pipe)) {
572 ERR("write error on health quit pipe");
573 }
574
575 /* Dispatch thread */
576 CMM_STORE_SHARED(dispatch_thread_exit, 1);
577 futex_nto1_wake(&relay_conn_queue.futex);
578
579 if (relayd_live_stop()) {
580 ERR("Error stopping live threads");
581 retval = -1;
582 }
583 return retval;
584 }
585
586 /*
587 * Signal handler for the daemon
588 *
589 * Simply stop all worker threads, leaving main() return gracefully after
590 * joining all threads and calling cleanup().
591 */
592 static void sighandler(int sig)
593 {
594 switch (sig) {
595 case SIGPIPE:
596 DBG("SIGPIPE caught");
597 return;
598 case SIGINT:
599 DBG("SIGINT caught");
600 if (lttng_relay_stop_threads()) {
601 ERR("Error stopping threads");
602 }
603 break;
604 case SIGTERM:
605 DBG("SIGTERM caught");
606 if (lttng_relay_stop_threads()) {
607 ERR("Error stopping threads");
608 }
609 break;
610 case SIGUSR1:
611 CMM_STORE_SHARED(recv_child_signal, 1);
612 break;
613 default:
614 break;
615 }
616 }
617
618 /*
619 * Setup signal handler for :
620 * SIGINT, SIGTERM, SIGPIPE
621 */
622 static int set_signal_handler(void)
623 {
624 int ret = 0;
625 struct sigaction sa;
626 sigset_t sigset;
627
628 if ((ret = sigemptyset(&sigset)) < 0) {
629 PERROR("sigemptyset");
630 return ret;
631 }
632
633 sa.sa_handler = sighandler;
634 sa.sa_mask = sigset;
635 sa.sa_flags = 0;
636 if ((ret = sigaction(SIGTERM, &sa, NULL)) < 0) {
637 PERROR("sigaction");
638 return ret;
639 }
640
641 if ((ret = sigaction(SIGINT, &sa, NULL)) < 0) {
642 PERROR("sigaction");
643 return ret;
644 }
645
646 if ((ret = sigaction(SIGPIPE, &sa, NULL)) < 0) {
647 PERROR("sigaction");
648 return ret;
649 }
650
651 if ((ret = sigaction(SIGUSR1, &sa, NULL)) < 0) {
652 PERROR("sigaction");
653 return ret;
654 }
655
656 DBG("Signal handler set for SIGTERM, SIGUSR1, SIGPIPE and SIGINT");
657
658 return ret;
659 }
660
661 void lttng_relay_notify_ready(void)
662 {
663 /* Notify the parent of the fork() process that we are ready. */
664 if (opt_daemon || opt_background) {
665 if (uatomic_sub_return(&lttng_relay_ready, 1) == 0) {
666 kill(child_ppid, SIGUSR1);
667 }
668 }
669 }
670
671 /*
672 * Init thread quit pipe.
673 *
674 * Return -1 on error or 0 if all pipes are created.
675 */
676 static int init_thread_quit_pipe(void)
677 {
678 int ret;
679
680 ret = utils_create_pipe_cloexec(thread_quit_pipe);
681
682 return ret;
683 }
684
685 /*
686 * Create a poll set with O_CLOEXEC and add the thread quit pipe to the set.
687 */
688 static int create_thread_poll_set(struct lttng_poll_event *events, int size)
689 {
690 int ret;
691
692 if (events == NULL || size == 0) {
693 ret = -1;
694 goto error;
695 }
696
697 ret = lttng_poll_create(events, size, LTTNG_CLOEXEC);
698 if (ret < 0) {
699 goto error;
700 }
701
702 /* Add quit pipe */
703 ret = lttng_poll_add(events, thread_quit_pipe[0], LPOLLIN | LPOLLERR);
704 if (ret < 0) {
705 goto error;
706 }
707
708 return 0;
709
710 error:
711 return ret;
712 }
713
714 /*
715 * Check if the thread quit pipe was triggered.
716 *
717 * Return 1 if it was triggered else 0;
718 */
719 static int check_thread_quit_pipe(int fd, uint32_t events)
720 {
721 if (fd == thread_quit_pipe[0] && (events & LPOLLIN)) {
722 return 1;
723 }
724
725 return 0;
726 }
727
728 /*
729 * Create and init socket from uri.
730 */
731 static struct lttcomm_sock *relay_socket_create(struct lttng_uri *uri)
732 {
733 int ret;
734 struct lttcomm_sock *sock = NULL;
735
736 sock = lttcomm_alloc_sock_from_uri(uri);
737 if (sock == NULL) {
738 ERR("Allocating socket");
739 goto error;
740 }
741
742 ret = lttcomm_create_sock(sock);
743 if (ret < 0) {
744 goto error;
745 }
746 DBG("Listening on sock %d", sock->fd);
747
748 ret = sock->ops->bind(sock);
749 if (ret < 0) {
750 goto error;
751 }
752
753 ret = sock->ops->listen(sock, -1);
754 if (ret < 0) {
755 goto error;
756
757 }
758
759 return sock;
760
761 error:
762 if (sock) {
763 lttcomm_destroy_sock(sock);
764 }
765 return NULL;
766 }
767
768 /*
769 * This thread manages the listening for new connections on the network
770 */
771 static void *relay_thread_listener(void *data)
772 {
773 int i, ret, pollfd, err = -1;
774 uint32_t revents, nb_fd;
775 struct lttng_poll_event events;
776 struct lttcomm_sock *control_sock, *data_sock;
777
778 DBG("[thread] Relay listener started");
779
780 health_register(health_relayd, HEALTH_RELAYD_TYPE_LISTENER);
781
782 health_code_update();
783
784 control_sock = relay_socket_create(control_uri);
785 if (!control_sock) {
786 goto error_sock_control;
787 }
788
789 data_sock = relay_socket_create(data_uri);
790 if (!data_sock) {
791 goto error_sock_relay;
792 }
793
794 /*
795 * Pass 3 as size here for the thread quit pipe, control and
796 * data socket.
797 */
798 ret = create_thread_poll_set(&events, 3);
799 if (ret < 0) {
800 goto error_create_poll;
801 }
802
803 /* Add the control socket */
804 ret = lttng_poll_add(&events, control_sock->fd, LPOLLIN | LPOLLRDHUP);
805 if (ret < 0) {
806 goto error_poll_add;
807 }
808
809 /* Add the data socket */
810 ret = lttng_poll_add(&events, data_sock->fd, LPOLLIN | LPOLLRDHUP);
811 if (ret < 0) {
812 goto error_poll_add;
813 }
814
815 lttng_relay_notify_ready();
816
817 if (testpoint(relayd_thread_listener)) {
818 goto error_testpoint;
819 }
820
821 while (1) {
822 health_code_update();
823
824 DBG("Listener accepting connections");
825
826 restart:
827 health_poll_entry();
828 ret = lttng_poll_wait(&events, -1);
829 health_poll_exit();
830 if (ret < 0) {
831 /*
832 * Restart interrupted system call.
833 */
834 if (errno == EINTR) {
835 goto restart;
836 }
837 goto error;
838 }
839
840 nb_fd = ret;
841
842 DBG("Relay new connection received");
843 for (i = 0; i < nb_fd; i++) {
844 health_code_update();
845
846 /* Fetch once the poll data */
847 revents = LTTNG_POLL_GETEV(&events, i);
848 pollfd = LTTNG_POLL_GETFD(&events, i);
849
850 if (!revents) {
851 /*
852 * No activity for this FD (poll
853 * implementation).
854 */
855 continue;
856 }
857
858 /* Thread quit pipe has been closed. Killing thread. */
859 ret = check_thread_quit_pipe(pollfd, revents);
860 if (ret) {
861 err = 0;
862 goto exit;
863 }
864
865 if (revents & LPOLLIN) {
866 /*
867 * A new connection is requested, therefore a
868 * sessiond/consumerd connection is allocated in
869 * this thread, enqueued to a global queue and
870 * dequeued (and freed) in the worker thread.
871 */
872 int val = 1;
873 struct relay_connection *new_conn;
874 struct lttcomm_sock *newsock;
875 enum connection_type type;
876
877 if (pollfd == data_sock->fd) {
878 type = RELAY_DATA;
879 newsock = data_sock->ops->accept(data_sock);
880 DBG("Relay data connection accepted, socket %d",
881 newsock->fd);
882 } else {
883 assert(pollfd == control_sock->fd);
884 type = RELAY_CONTROL;
885 newsock = control_sock->ops->accept(control_sock);
886 DBG("Relay control connection accepted, socket %d",
887 newsock->fd);
888 }
889 if (!newsock) {
890 PERROR("accepting sock");
891 goto error;
892 }
893
894 ret = setsockopt(newsock->fd, SOL_SOCKET, SO_REUSEADDR, &val,
895 sizeof(val));
896 if (ret < 0) {
897 PERROR("setsockopt inet");
898 lttcomm_destroy_sock(newsock);
899 goto error;
900 }
901 new_conn = connection_create(newsock, type);
902 if (!new_conn) {
903 lttcomm_destroy_sock(newsock);
904 goto error;
905 }
906
907 /* Enqueue request for the dispatcher thread. */
908 cds_wfcq_enqueue(&relay_conn_queue.head, &relay_conn_queue.tail,
909 &new_conn->qnode);
910
911 /*
912 * Wake the dispatch queue futex.
913 * Implicit memory barrier with the
914 * exchange in cds_wfcq_enqueue.
915 */
916 futex_nto1_wake(&relay_conn_queue.futex);
917 } else if (revents & (LPOLLERR | LPOLLHUP | LPOLLRDHUP)) {
918 ERR("socket poll error");
919 goto error;
920 } else {
921 ERR("Unexpected poll events %u for sock %d", revents, pollfd);
922 goto error;
923 }
924 }
925 }
926
927 exit:
928 error:
929 error_poll_add:
930 error_testpoint:
931 lttng_poll_clean(&events);
932 error_create_poll:
933 if (data_sock->fd >= 0) {
934 ret = data_sock->ops->close(data_sock);
935 if (ret) {
936 PERROR("close");
937 }
938 }
939 lttcomm_destroy_sock(data_sock);
940 error_sock_relay:
941 if (control_sock->fd >= 0) {
942 ret = control_sock->ops->close(control_sock);
943 if (ret) {
944 PERROR("close");
945 }
946 }
947 lttcomm_destroy_sock(control_sock);
948 error_sock_control:
949 if (err) {
950 health_error();
951 ERR("Health error occurred in %s", __func__);
952 }
953 health_unregister(health_relayd);
954 DBG("Relay listener thread cleanup complete");
955 lttng_relay_stop_threads();
956 return NULL;
957 }
958
959 /*
960 * This thread manages the dispatching of the requests to worker threads
961 */
962 static void *relay_thread_dispatcher(void *data)
963 {
964 int err = -1;
965 ssize_t ret;
966 struct cds_wfcq_node *node;
967 struct relay_connection *new_conn = NULL;
968
969 DBG("[thread] Relay dispatcher started");
970
971 health_register(health_relayd, HEALTH_RELAYD_TYPE_DISPATCHER);
972
973 if (testpoint(relayd_thread_dispatcher)) {
974 goto error_testpoint;
975 }
976
977 health_code_update();
978
979 while (!CMM_LOAD_SHARED(dispatch_thread_exit)) {
980 health_code_update();
981
982 /* Atomically prepare the queue futex */
983 futex_nto1_prepare(&relay_conn_queue.futex);
984
985 do {
986 health_code_update();
987
988 /* Dequeue commands */
989 node = cds_wfcq_dequeue_blocking(&relay_conn_queue.head,
990 &relay_conn_queue.tail);
991 if (node == NULL) {
992 DBG("Woken up but nothing in the relay command queue");
993 /* Continue thread execution */
994 break;
995 }
996 new_conn = caa_container_of(node, struct relay_connection, qnode);
997
998 DBG("Dispatching request waiting on sock %d", new_conn->sock->fd);
999
1000 /*
1001 * Inform worker thread of the new request. This
1002 * call is blocking so we can be assured that
1003 * the data will be read at some point in time
1004 * or wait to the end of the world :)
1005 */
1006 ret = lttng_write(relay_conn_pipe[1], &new_conn, sizeof(new_conn));
1007 if (ret < 0) {
1008 PERROR("write connection pipe");
1009 connection_put(new_conn);
1010 goto error;
1011 }
1012 } while (node != NULL);
1013
1014 /* Futex wait on queue. Blocking call on futex() */
1015 health_poll_entry();
1016 futex_nto1_wait(&relay_conn_queue.futex);
1017 health_poll_exit();
1018 }
1019
1020 /* Normal exit, no error */
1021 err = 0;
1022
1023 error:
1024 error_testpoint:
1025 if (err) {
1026 health_error();
1027 ERR("Health error occurred in %s", __func__);
1028 }
1029 health_unregister(health_relayd);
1030 DBG("Dispatch thread dying");
1031 lttng_relay_stop_threads();
1032 return NULL;
1033 }
1034
1035 /*
1036 * Set index data from the control port to a given index object.
1037 */
1038 static int set_index_control_data(struct relay_index *index,
1039 struct lttcomm_relayd_index *data)
1040 {
1041 struct ctf_packet_index index_data;
1042
1043 /*
1044 * The index on disk is encoded in big endian, so we don't need
1045 * to convert the data received on the network. The data_offset
1046 * value is NEVER modified here and is updated by the data
1047 * thread.
1048 */
1049 index_data.packet_size = data->packet_size;
1050 index_data.content_size = data->content_size;
1051 index_data.timestamp_begin = data->timestamp_begin;
1052 index_data.timestamp_end = data->timestamp_end;
1053 index_data.events_discarded = data->events_discarded;
1054 index_data.stream_id = data->stream_id;
1055 return relay_index_set_data(index, &index_data);
1056 }
1057
1058 /*
1059 * Handle the RELAYD_CREATE_SESSION command.
1060 *
1061 * On success, send back the session id or else return a negative value.
1062 */
1063 static int relay_create_session(struct lttcomm_relayd_hdr *recv_hdr,
1064 struct relay_connection *conn)
1065 {
1066 int ret = 0, send_ret;
1067 struct relay_session *session;
1068 struct lttcomm_relayd_status_session reply;
1069 char session_name[LTTNG_NAME_MAX];
1070 char hostname[LTTNG_HOST_NAME_MAX];
1071 uint32_t live_timer = 0;
1072 bool snapshot = false;
1073
1074 memset(session_name, 0, LTTNG_NAME_MAX);
1075 memset(hostname, 0, LTTNG_HOST_NAME_MAX);
1076
1077 memset(&reply, 0, sizeof(reply));
1078
1079 switch (conn->minor) {
1080 case 1:
1081 case 2:
1082 case 3:
1083 break;
1084 case 4: /* LTTng sessiond 2.4 */
1085 default:
1086 ret = cmd_create_session_2_4(conn, session_name,
1087 hostname, &live_timer, &snapshot);
1088 }
1089 if (ret < 0) {
1090 goto send_reply;
1091 }
1092
1093 session = session_create(session_name, hostname, live_timer,
1094 snapshot, conn->major, conn->minor);
1095 if (!session) {
1096 ret = -1;
1097 goto send_reply;
1098 }
1099 assert(!conn->session);
1100 conn->session = session;
1101 DBG("Created session %" PRIu64, session->id);
1102
1103 reply.session_id = htobe64(session->id);
1104
1105 send_reply:
1106 if (ret < 0) {
1107 reply.ret_code = htobe32(LTTNG_ERR_FATAL);
1108 } else {
1109 reply.ret_code = htobe32(LTTNG_OK);
1110 }
1111
1112 send_ret = conn->sock->ops->sendmsg(conn->sock, &reply, sizeof(reply), 0);
1113 if (send_ret < 0) {
1114 ERR("Relayd sending session id");
1115 ret = send_ret;
1116 }
1117
1118 return ret;
1119 }
1120
1121 /*
1122 * When we have received all the streams and the metadata for a channel,
1123 * we make them visible to the viewer threads.
1124 */
1125 static void publish_connection_local_streams(struct relay_connection *conn)
1126 {
1127 struct relay_stream *stream;
1128 struct relay_session *session = conn->session;
1129
1130 /*
1131 * We publish all streams belonging to a session atomically wrt
1132 * session lock.
1133 */
1134 pthread_mutex_lock(&session->lock);
1135 rcu_read_lock();
1136 cds_list_for_each_entry_rcu(stream, &session->recv_list,
1137 recv_node) {
1138 stream_publish(stream);
1139 }
1140 rcu_read_unlock();
1141
1142 /*
1143 * Inform the viewer that there are new streams in the session.
1144 */
1145 if (session->viewer_attached) {
1146 uatomic_set(&session->new_streams, 1);
1147 }
1148 pthread_mutex_unlock(&session->lock);
1149 }
1150
1151 /*
1152 * relay_add_stream: allocate a new stream for a session
1153 */
1154 static int relay_add_stream(struct lttcomm_relayd_hdr *recv_hdr,
1155 struct relay_connection *conn)
1156 {
1157 int ret;
1158 ssize_t send_ret;
1159 struct relay_session *session = conn->session;
1160 struct relay_stream *stream = NULL;
1161 struct lttcomm_relayd_status_stream reply;
1162 struct ctf_trace *trace = NULL;
1163 uint64_t stream_handle = -1ULL;
1164 char *path_name = NULL, *channel_name = NULL;
1165 uint64_t tracefile_size = 0, tracefile_count = 0;
1166
1167 if (!session || conn->version_check_done == 0) {
1168 ERR("Trying to add a stream before version check");
1169 ret = -1;
1170 goto end_no_session;
1171 }
1172
1173 switch (session->minor) {
1174 case 1: /* LTTng sessiond 2.1. Allocates path_name and channel_name. */
1175 ret = cmd_recv_stream_2_1(conn, &path_name,
1176 &channel_name);
1177 break;
1178 case 2: /* LTTng sessiond 2.2. Allocates path_name and channel_name. */
1179 default:
1180 ret = cmd_recv_stream_2_2(conn, &path_name,
1181 &channel_name, &tracefile_size, &tracefile_count);
1182 break;
1183 }
1184 if (ret < 0) {
1185 goto send_reply;
1186 }
1187
1188 trace = ctf_trace_get_by_path_or_create(session, path_name);
1189 if (!trace) {
1190 goto send_reply;
1191 }
1192 /* This stream here has one reference on the trace. */
1193
1194 pthread_mutex_lock(&last_relay_stream_id_lock);
1195 stream_handle = ++last_relay_stream_id;
1196 pthread_mutex_unlock(&last_relay_stream_id_lock);
1197
1198 /* We pass ownership of path_name and channel_name. */
1199 stream = stream_create(trace, stream_handle, path_name,
1200 channel_name, tracefile_size, tracefile_count);
1201 path_name = NULL;
1202 channel_name = NULL;
1203
1204 /*
1205 * Streams are the owners of their trace. Reference to trace is
1206 * kept within stream_create().
1207 */
1208 ctf_trace_put(trace);
1209
1210 send_reply:
1211 memset(&reply, 0, sizeof(reply));
1212 reply.handle = htobe64(stream_handle);
1213 if (!stream) {
1214 reply.ret_code = htobe32(LTTNG_ERR_UNK);
1215 } else {
1216 reply.ret_code = htobe32(LTTNG_OK);
1217 }
1218
1219 send_ret = conn->sock->ops->sendmsg(conn->sock, &reply,
1220 sizeof(struct lttcomm_relayd_status_stream), 0);
1221 if (send_ret < 0) {
1222 ERR("Relay sending stream id");
1223 ret = (int) send_ret;
1224 }
1225
1226 end_no_session:
1227 free(path_name);
1228 free(channel_name);
1229 return ret;
1230 }
1231
1232 /*
1233 * relay_close_stream: close a specific stream
1234 */
1235 static int relay_close_stream(struct lttcomm_relayd_hdr *recv_hdr,
1236 struct relay_connection *conn)
1237 {
1238 int ret, send_ret;
1239 struct relay_session *session = conn->session;
1240 struct lttcomm_relayd_close_stream stream_info;
1241 struct lttcomm_relayd_generic_reply reply;
1242 struct relay_stream *stream;
1243
1244 DBG("Close stream received");
1245
1246 if (!session || conn->version_check_done == 0) {
1247 ERR("Trying to close a stream before version check");
1248 ret = -1;
1249 goto end_no_session;
1250 }
1251
1252 ret = conn->sock->ops->recvmsg(conn->sock, &stream_info,
1253 sizeof(struct lttcomm_relayd_close_stream), 0);
1254 if (ret < sizeof(struct lttcomm_relayd_close_stream)) {
1255 if (ret == 0) {
1256 /* Orderly shutdown. Not necessary to print an error. */
1257 DBG("Socket %d did an orderly shutdown", conn->sock->fd);
1258 } else {
1259 ERR("Relay didn't receive valid add_stream struct size : %d", ret);
1260 }
1261 ret = -1;
1262 goto end_no_session;
1263 }
1264
1265 stream = stream_get_by_id(be64toh(stream_info.stream_id));
1266 if (!stream) {
1267 ret = -1;
1268 goto end;
1269 }
1270
1271 /*
1272 * Set last_net_seq_num before the close flag. Required by data
1273 * pending check.
1274 */
1275 pthread_mutex_lock(&stream->lock);
1276 stream->last_net_seq_num = be64toh(stream_info.last_net_seq_num);
1277 pthread_mutex_unlock(&stream->lock);
1278
1279 /*
1280 * This is one of the conditions which may trigger a stream close
1281 * with the others being:
1282 * 1) A close command is received for a stream
1283 * 2) The control connection owning the stream is closed
1284 * 3) We have received all of the stream's data _after_ a close
1285 * request.
1286 */
1287 try_stream_close(stream);
1288 if (stream->is_metadata) {
1289 struct relay_viewer_stream *vstream;
1290
1291 vstream = viewer_stream_get_by_id(stream->stream_handle);
1292 if (vstream) {
1293 if (vstream->metadata_sent == stream->metadata_received) {
1294 /*
1295 * Since all the metadata has been sent to the
1296 * viewer and that we have a request to close
1297 * its stream, we can safely teardown the
1298 * corresponding metadata viewer stream.
1299 */
1300 viewer_stream_put(vstream);
1301 }
1302 /* Put local reference. */
1303 viewer_stream_put(vstream);
1304 }
1305 }
1306 stream_put(stream);
1307
1308 end:
1309 memset(&reply, 0, sizeof(reply));
1310 if (ret < 0) {
1311 reply.ret_code = htobe32(LTTNG_ERR_UNK);
1312 } else {
1313 reply.ret_code = htobe32(LTTNG_OK);
1314 }
1315 send_ret = conn->sock->ops->sendmsg(conn->sock, &reply,
1316 sizeof(struct lttcomm_relayd_generic_reply), 0);
1317 if (send_ret < 0) {
1318 ERR("Relay sending stream id");
1319 ret = send_ret;
1320 }
1321
1322 end_no_session:
1323 return ret;
1324 }
1325
1326 /*
1327 * relay_unknown_command: send -1 if received unknown command
1328 */
1329 static void relay_unknown_command(struct relay_connection *conn)
1330 {
1331 struct lttcomm_relayd_generic_reply reply;
1332 int ret;
1333
1334 memset(&reply, 0, sizeof(reply));
1335 reply.ret_code = htobe32(LTTNG_ERR_UNK);
1336 ret = conn->sock->ops->sendmsg(conn->sock, &reply,
1337 sizeof(struct lttcomm_relayd_generic_reply), 0);
1338 if (ret < 0) {
1339 ERR("Relay sending unknown command");
1340 }
1341 }
1342
1343 /*
1344 * relay_start: send an acknowledgment to the client to tell if we are
1345 * ready to receive data. We are ready if a session is established.
1346 */
1347 static int relay_start(struct lttcomm_relayd_hdr *recv_hdr,
1348 struct relay_connection *conn)
1349 {
1350 int ret = htobe32(LTTNG_OK);
1351 struct lttcomm_relayd_generic_reply reply;
1352 struct relay_session *session = conn->session;
1353
1354 if (!session) {
1355 DBG("Trying to start the streaming without a session established");
1356 ret = htobe32(LTTNG_ERR_UNK);
1357 }
1358
1359 memset(&reply, 0, sizeof(reply));
1360 reply.ret_code = ret;
1361 ret = conn->sock->ops->sendmsg(conn->sock, &reply,
1362 sizeof(struct lttcomm_relayd_generic_reply), 0);
1363 if (ret < 0) {
1364 ERR("Relay sending start ack");
1365 }
1366
1367 return ret;
1368 }
1369
1370 /*
1371 * Append padding to the file pointed by the file descriptor fd.
1372 */
1373 static int write_padding_to_file(int fd, uint32_t size)
1374 {
1375 ssize_t ret = 0;
1376 char *zeros;
1377
1378 if (size == 0) {
1379 goto end;
1380 }
1381
1382 zeros = zmalloc(size);
1383 if (zeros == NULL) {
1384 PERROR("zmalloc zeros for padding");
1385 ret = -1;
1386 goto end;
1387 }
1388
1389 ret = lttng_write(fd, zeros, size);
1390 if (ret < size) {
1391 PERROR("write padding to file");
1392 }
1393
1394 free(zeros);
1395
1396 end:
1397 return ret;
1398 }
1399
1400 /*
1401 * relay_recv_metadata: receive the metadata for the session.
1402 */
1403 static int relay_recv_metadata(struct lttcomm_relayd_hdr *recv_hdr,
1404 struct relay_connection *conn)
1405 {
1406 int ret = 0;
1407 ssize_t size_ret;
1408 struct relay_session *session = conn->session;
1409 struct lttcomm_relayd_metadata_payload *metadata_struct;
1410 struct relay_stream *metadata_stream;
1411 uint64_t data_size, payload_size;
1412
1413 if (!session) {
1414 ERR("Metadata sent before version check");
1415 ret = -1;
1416 goto end;
1417 }
1418
1419 data_size = payload_size = be64toh(recv_hdr->data_size);
1420 if (data_size < sizeof(struct lttcomm_relayd_metadata_payload)) {
1421 ERR("Incorrect data size");
1422 ret = -1;
1423 goto end;
1424 }
1425 payload_size -= sizeof(struct lttcomm_relayd_metadata_payload);
1426
1427 if (data_buffer_size < data_size) {
1428 /* In case the realloc fails, we can free the memory */
1429 char *tmp_data_ptr;
1430
1431 tmp_data_ptr = realloc(data_buffer, data_size);
1432 if (!tmp_data_ptr) {
1433 ERR("Allocating data buffer");
1434 free(data_buffer);
1435 ret = -1;
1436 goto end;
1437 }
1438 data_buffer = tmp_data_ptr;
1439 data_buffer_size = data_size;
1440 }
1441 memset(data_buffer, 0, data_size);
1442 DBG2("Relay receiving metadata, waiting for %" PRIu64 " bytes", data_size);
1443 size_ret = conn->sock->ops->recvmsg(conn->sock, data_buffer, data_size, 0);
1444 if (size_ret < 0 || size_ret != data_size) {
1445 if (size_ret == 0) {
1446 /* Orderly shutdown. Not necessary to print an error. */
1447 DBG("Socket %d did an orderly shutdown", conn->sock->fd);
1448 } else {
1449 ERR("Relay didn't receive the whole metadata");
1450 }
1451 ret = -1;
1452 goto end;
1453 }
1454 metadata_struct = (struct lttcomm_relayd_metadata_payload *) data_buffer;
1455
1456 metadata_stream = stream_get_by_id(be64toh(metadata_struct->stream_id));
1457 if (!metadata_stream) {
1458 ret = -1;
1459 goto end;
1460 }
1461
1462 pthread_mutex_lock(&metadata_stream->lock);
1463
1464 size_ret = lttng_write(metadata_stream->stream_fd->fd, metadata_struct->payload,
1465 payload_size);
1466 if (size_ret < payload_size) {
1467 ERR("Relay error writing metadata on file");
1468 ret = -1;
1469 goto end_put;
1470 }
1471
1472 size_ret = write_padding_to_file(metadata_stream->stream_fd->fd,
1473 be32toh(metadata_struct->padding_size));
1474 if (size_ret < 0) {
1475 goto end_put;
1476 }
1477
1478 metadata_stream->metadata_received +=
1479 payload_size + be32toh(metadata_struct->padding_size);
1480 DBG2("Relay metadata written. Updated metadata_received %" PRIu64,
1481 metadata_stream->metadata_received);
1482
1483 end_put:
1484 pthread_mutex_unlock(&metadata_stream->lock);
1485 stream_put(metadata_stream);
1486 end:
1487 return ret;
1488 }
1489
1490 /*
1491 * relay_send_version: send relayd version number
1492 */
1493 static int relay_send_version(struct lttcomm_relayd_hdr *recv_hdr,
1494 struct relay_connection *conn)
1495 {
1496 int ret;
1497 struct lttcomm_relayd_version reply, msg;
1498
1499 conn->version_check_done = 1;
1500
1501 /* Get version from the other side. */
1502 ret = conn->sock->ops->recvmsg(conn->sock, &msg, sizeof(msg), 0);
1503 if (ret < 0 || ret != sizeof(msg)) {
1504 if (ret == 0) {
1505 /* Orderly shutdown. Not necessary to print an error. */
1506 DBG("Socket %d did an orderly shutdown", conn->sock->fd);
1507 } else {
1508 ERR("Relay failed to receive the version values.");
1509 }
1510 ret = -1;
1511 goto end;
1512 }
1513
1514 memset(&reply, 0, sizeof(reply));
1515 reply.major = RELAYD_VERSION_COMM_MAJOR;
1516 reply.minor = RELAYD_VERSION_COMM_MINOR;
1517
1518 /* Major versions must be the same */
1519 if (reply.major != be32toh(msg.major)) {
1520 DBG("Incompatible major versions (%u vs %u), deleting session",
1521 reply.major, be32toh(msg.major));
1522 connection_put(conn);
1523 ret = 0;
1524 goto end;
1525 }
1526
1527 conn->major = reply.major;
1528 /* We adapt to the lowest compatible version */
1529 if (reply.minor <= be32toh(msg.minor)) {
1530 conn->minor = reply.minor;
1531 } else {
1532 conn->minor = be32toh(msg.minor);
1533 }
1534
1535 reply.major = htobe32(reply.major);
1536 reply.minor = htobe32(reply.minor);
1537 ret = conn->sock->ops->sendmsg(conn->sock, &reply,
1538 sizeof(struct lttcomm_relayd_version), 0);
1539 if (ret < 0) {
1540 ERR("Relay sending version");
1541 }
1542
1543 DBG("Version check done using protocol %u.%u", conn->major,
1544 conn->minor);
1545
1546 end:
1547 return ret;
1548 }
1549
1550 /*
1551 * Check for data pending for a given stream id from the session daemon.
1552 */
1553 static int relay_data_pending(struct lttcomm_relayd_hdr *recv_hdr,
1554 struct relay_connection *conn)
1555 {
1556 struct relay_session *session = conn->session;
1557 struct lttcomm_relayd_data_pending msg;
1558 struct lttcomm_relayd_generic_reply reply;
1559 struct relay_stream *stream;
1560 int ret;
1561 uint64_t last_net_seq_num, stream_id;
1562
1563 DBG("Data pending command received");
1564
1565 if (!session || conn->version_check_done == 0) {
1566 ERR("Trying to check for data before version check");
1567 ret = -1;
1568 goto end_no_session;
1569 }
1570
1571 ret = conn->sock->ops->recvmsg(conn->sock, &msg, sizeof(msg), 0);
1572 if (ret < sizeof(msg)) {
1573 if (ret == 0) {
1574 /* Orderly shutdown. Not necessary to print an error. */
1575 DBG("Socket %d did an orderly shutdown", conn->sock->fd);
1576 } else {
1577 ERR("Relay didn't receive valid data_pending struct size : %d",
1578 ret);
1579 }
1580 ret = -1;
1581 goto end_no_session;
1582 }
1583
1584 stream_id = be64toh(msg.stream_id);
1585 last_net_seq_num = be64toh(msg.last_net_seq_num);
1586
1587 stream = stream_get_by_id(stream_id);
1588 if (stream == NULL) {
1589 ret = -1;
1590 goto end;
1591 }
1592
1593 pthread_mutex_lock(&stream->lock);
1594
1595 DBG("Data pending for stream id %" PRIu64 " prev_seq %" PRIu64
1596 " and last_seq %" PRIu64, stream_id, stream->prev_seq,
1597 last_net_seq_num);
1598
1599 /* Avoid wrapping issue */
1600 if (((int64_t) (stream->prev_seq - last_net_seq_num)) >= 0) {
1601 /* Data has in fact been written and is NOT pending */
1602 ret = 0;
1603 } else {
1604 /* Data still being streamed thus pending */
1605 ret = 1;
1606 }
1607
1608 stream->data_pending_check_done = true;
1609 pthread_mutex_unlock(&stream->lock);
1610
1611 stream_put(stream);
1612 end:
1613
1614 memset(&reply, 0, sizeof(reply));
1615 reply.ret_code = htobe32(ret);
1616 ret = conn->sock->ops->sendmsg(conn->sock, &reply, sizeof(reply), 0);
1617 if (ret < 0) {
1618 ERR("Relay data pending ret code failed");
1619 }
1620
1621 end_no_session:
1622 return ret;
1623 }
1624
1625 /*
1626 * Wait for the control socket to reach a quiescent state.
1627 *
1628 * Note that for now, when receiving this command from the session
1629 * daemon, this means that every subsequent commands or data received on
1630 * the control socket has been handled. So, this is why we simply return
1631 * OK here.
1632 */
1633 static int relay_quiescent_control(struct lttcomm_relayd_hdr *recv_hdr,
1634 struct relay_connection *conn)
1635 {
1636 int ret;
1637 uint64_t stream_id;
1638 struct relay_stream *stream;
1639 struct lttcomm_relayd_quiescent_control msg;
1640 struct lttcomm_relayd_generic_reply reply;
1641
1642 DBG("Checking quiescent state on control socket");
1643
1644 if (!conn->session || conn->version_check_done == 0) {
1645 ERR("Trying to check for data before version check");
1646 ret = -1;
1647 goto end_no_session;
1648 }
1649
1650 ret = conn->sock->ops->recvmsg(conn->sock, &msg, sizeof(msg), 0);
1651 if (ret < sizeof(msg)) {
1652 if (ret == 0) {
1653 /* Orderly shutdown. Not necessary to print an error. */
1654 DBG("Socket %d did an orderly shutdown", conn->sock->fd);
1655 } else {
1656 ERR("Relay didn't receive valid begin data_pending struct size: %d",
1657 ret);
1658 }
1659 ret = -1;
1660 goto end_no_session;
1661 }
1662
1663 stream_id = be64toh(msg.stream_id);
1664 stream = stream_get_by_id(stream_id);
1665 if (!stream) {
1666 goto reply;
1667 }
1668 pthread_mutex_lock(&stream->lock);
1669 stream->data_pending_check_done = true;
1670 pthread_mutex_unlock(&stream->lock);
1671 DBG("Relay quiescent control pending flag set to %" PRIu64, stream_id);
1672 stream_put(stream);
1673 reply:
1674 memset(&reply, 0, sizeof(reply));
1675 reply.ret_code = htobe32(LTTNG_OK);
1676 ret = conn->sock->ops->sendmsg(conn->sock, &reply, sizeof(reply), 0);
1677 if (ret < 0) {
1678 ERR("Relay data quiescent control ret code failed");
1679 }
1680
1681 end_no_session:
1682 return ret;
1683 }
1684
1685 /*
1686 * Initialize a data pending command. This means that a consumer is about
1687 * to ask for data pending for each stream it holds. Simply iterate over
1688 * all streams of a session and set the data_pending_check_done flag.
1689 *
1690 * This command returns to the client a LTTNG_OK code.
1691 */
1692 static int relay_begin_data_pending(struct lttcomm_relayd_hdr *recv_hdr,
1693 struct relay_connection *conn)
1694 {
1695 int ret;
1696 struct lttng_ht_iter iter;
1697 struct lttcomm_relayd_begin_data_pending msg;
1698 struct lttcomm_relayd_generic_reply reply;
1699 struct relay_stream *stream;
1700 uint64_t session_id;
1701
1702 assert(recv_hdr);
1703 assert(conn);
1704
1705 DBG("Init streams for data pending");
1706
1707 if (!conn->session || conn->version_check_done == 0) {
1708 ERR("Trying to check for data before version check");
1709 ret = -1;
1710 goto end_no_session;
1711 }
1712
1713 ret = conn->sock->ops->recvmsg(conn->sock, &msg, sizeof(msg), 0);
1714 if (ret < sizeof(msg)) {
1715 if (ret == 0) {
1716 /* Orderly shutdown. Not necessary to print an error. */
1717 DBG("Socket %d did an orderly shutdown", conn->sock->fd);
1718 } else {
1719 ERR("Relay didn't receive valid begin data_pending struct size: %d",
1720 ret);
1721 }
1722 ret = -1;
1723 goto end_no_session;
1724 }
1725
1726 session_id = be64toh(msg.session_id);
1727
1728 /*
1729 * Iterate over all streams to set the begin data pending flag.
1730 * For now, the streams are indexed by stream handle so we have
1731 * to iterate over all streams to find the one associated with
1732 * the right session_id.
1733 */
1734 rcu_read_lock();
1735 cds_lfht_for_each_entry(relay_streams_ht->ht, &iter.iter, stream,
1736 node.node) {
1737 if (!stream_get(stream)) {
1738 continue;
1739 }
1740 if (stream->trace->session->id == session_id) {
1741 pthread_mutex_lock(&stream->lock);
1742 stream->data_pending_check_done = false;
1743 pthread_mutex_unlock(&stream->lock);
1744 DBG("Set begin data pending flag to stream %" PRIu64,
1745 stream->stream_handle);
1746 }
1747 stream_put(stream);
1748 }
1749 rcu_read_unlock();
1750
1751 memset(&reply, 0, sizeof(reply));
1752 /* All good, send back reply. */
1753 reply.ret_code = htobe32(LTTNG_OK);
1754
1755 ret = conn->sock->ops->sendmsg(conn->sock, &reply, sizeof(reply), 0);
1756 if (ret < 0) {
1757 ERR("Relay begin data pending send reply failed");
1758 }
1759
1760 end_no_session:
1761 return ret;
1762 }
1763
1764 /*
1765 * End data pending command. This will check, for a given session id, if
1766 * each stream associated with it has its data_pending_check_done flag
1767 * set. If not, this means that the client lost track of the stream but
1768 * the data is still being streamed on our side. In this case, we inform
1769 * the client that data is in flight.
1770 *
1771 * Return to the client if there is data in flight or not with a ret_code.
1772 */
1773 static int relay_end_data_pending(struct lttcomm_relayd_hdr *recv_hdr,
1774 struct relay_connection *conn)
1775 {
1776 int ret;
1777 struct lttng_ht_iter iter;
1778 struct lttcomm_relayd_end_data_pending msg;
1779 struct lttcomm_relayd_generic_reply reply;
1780 struct relay_stream *stream;
1781 uint64_t session_id;
1782 uint32_t is_data_inflight = 0;
1783
1784 DBG("End data pending command");
1785
1786 if (!conn->session || conn->version_check_done == 0) {
1787 ERR("Trying to check for data before version check");
1788 ret = -1;
1789 goto end_no_session;
1790 }
1791
1792 ret = conn->sock->ops->recvmsg(conn->sock, &msg, sizeof(msg), 0);
1793 if (ret < sizeof(msg)) {
1794 if (ret == 0) {
1795 /* Orderly shutdown. Not necessary to print an error. */
1796 DBG("Socket %d did an orderly shutdown", conn->sock->fd);
1797 } else {
1798 ERR("Relay didn't receive valid end data_pending struct size: %d",
1799 ret);
1800 }
1801 ret = -1;
1802 goto end_no_session;
1803 }
1804
1805 session_id = be64toh(msg.session_id);
1806
1807 /*
1808 * Iterate over all streams to see if the begin data pending
1809 * flag is set.
1810 */
1811 rcu_read_lock();
1812 cds_lfht_for_each_entry(relay_streams_ht->ht, &iter.iter, stream,
1813 node.node) {
1814 if (!stream_get(stream)) {
1815 continue;
1816 }
1817 if (stream->trace->session->id != session_id) {
1818 stream_put(stream);
1819 continue;
1820 }
1821 pthread_mutex_lock(&stream->lock);
1822 if (!stream->data_pending_check_done) {
1823 if (!stream->closed || !(((int64_t) (stream->prev_seq - stream->last_net_seq_num)) >= 0)) {
1824 is_data_inflight = 1;
1825 DBG("Data is still in flight for stream %" PRIu64,
1826 stream->stream_handle);
1827 pthread_mutex_unlock(&stream->lock);
1828 stream_put(stream);
1829 break;
1830 }
1831 }
1832 pthread_mutex_unlock(&stream->lock);
1833 stream_put(stream);
1834 }
1835 rcu_read_unlock();
1836
1837 memset(&reply, 0, sizeof(reply));
1838 /* All good, send back reply. */
1839 reply.ret_code = htobe32(is_data_inflight);
1840
1841 ret = conn->sock->ops->sendmsg(conn->sock, &reply, sizeof(reply), 0);
1842 if (ret < 0) {
1843 ERR("Relay end data pending send reply failed");
1844 }
1845
1846 end_no_session:
1847 return ret;
1848 }
1849
1850 /*
1851 * Receive an index for a specific stream.
1852 *
1853 * Return 0 on success else a negative value.
1854 */
1855 static int relay_recv_index(struct lttcomm_relayd_hdr *recv_hdr,
1856 struct relay_connection *conn)
1857 {
1858 int ret, send_ret;
1859 struct relay_session *session = conn->session;
1860 struct lttcomm_relayd_index index_info;
1861 struct relay_index *index;
1862 struct lttcomm_relayd_generic_reply reply;
1863 struct relay_stream *stream;
1864 uint64_t net_seq_num;
1865
1866 assert(conn);
1867
1868 DBG("Relay receiving index");
1869
1870 if (!session || conn->version_check_done == 0) {
1871 ERR("Trying to close a stream before version check");
1872 ret = -1;
1873 goto end_no_session;
1874 }
1875
1876 ret = conn->sock->ops->recvmsg(conn->sock, &index_info,
1877 sizeof(index_info), 0);
1878 if (ret < sizeof(index_info)) {
1879 if (ret == 0) {
1880 /* Orderly shutdown. Not necessary to print an error. */
1881 DBG("Socket %d did an orderly shutdown", conn->sock->fd);
1882 } else {
1883 ERR("Relay didn't receive valid index struct size : %d", ret);
1884 }
1885 ret = -1;
1886 goto end_no_session;
1887 }
1888
1889 net_seq_num = be64toh(index_info.net_seq_num);
1890
1891 stream = stream_get_by_id(be64toh(index_info.relay_stream_id));
1892 if (!stream) {
1893 ERR("stream_get_by_id not found");
1894 ret = -1;
1895 goto end;
1896 }
1897 pthread_mutex_lock(&stream->lock);
1898
1899 /* Live beacon handling */
1900 if (index_info.packet_size == 0) {
1901 DBG("Received live beacon for stream %" PRIu64,
1902 stream->stream_handle);
1903
1904 /*
1905 * Only flag a stream inactive when it has already
1906 * received data and no indexes are in flight.
1907 */
1908 if (stream->index_received_seqcount > 0
1909 && stream->indexes_in_flight == 0) {
1910 stream->beacon_ts_end =
1911 be64toh(index_info.timestamp_end);
1912 }
1913 ret = 0;
1914 goto end_stream_put;
1915 } else {
1916 stream->beacon_ts_end = -1ULL;
1917 }
1918
1919 if (stream->ctf_stream_id == -1ULL) {
1920 stream->ctf_stream_id = be64toh(index_info.stream_id);
1921 }
1922 index = relay_index_get_by_id_or_create(stream, net_seq_num);
1923 if (!index) {
1924 ret = -1;
1925 ERR("relay_index_get_by_id_or_create index NULL");
1926 goto end_stream_put;
1927 }
1928 if (set_index_control_data(index, &index_info)) {
1929 ERR("set_index_control_data error");
1930 relay_index_put(index);
1931 ret = -1;
1932 goto end_stream_put;
1933 }
1934 ret = relay_index_try_flush(index);
1935 if (ret == 0) {
1936 tracefile_array_commit_seq(stream->tfa);
1937 stream->index_received_seqcount++;
1938 } else if (ret > 0) {
1939 /* no flush. */
1940 ret = 0;
1941 } else {
1942 ERR("relay_index_try_flush error %d", ret);
1943 relay_index_put(index);
1944 ret = -1;
1945 }
1946
1947 end_stream_put:
1948 pthread_mutex_unlock(&stream->lock);
1949 stream_put(stream);
1950
1951 end:
1952
1953 memset(&reply, 0, sizeof(reply));
1954 if (ret < 0) {
1955 reply.ret_code = htobe32(LTTNG_ERR_UNK);
1956 } else {
1957 reply.ret_code = htobe32(LTTNG_OK);
1958 }
1959 send_ret = conn->sock->ops->sendmsg(conn->sock, &reply, sizeof(reply), 0);
1960 if (send_ret < 0) {
1961 ERR("Relay sending close index id reply");
1962 ret = send_ret;
1963 }
1964
1965 end_no_session:
1966 return ret;
1967 }
1968
1969 /*
1970 * Receive the streams_sent message.
1971 *
1972 * Return 0 on success else a negative value.
1973 */
1974 static int relay_streams_sent(struct lttcomm_relayd_hdr *recv_hdr,
1975 struct relay_connection *conn)
1976 {
1977 int ret, send_ret;
1978 struct lttcomm_relayd_generic_reply reply;
1979
1980 assert(conn);
1981
1982 DBG("Relay receiving streams_sent");
1983
1984 if (!conn->session || conn->version_check_done == 0) {
1985 ERR("Trying to close a stream before version check");
1986 ret = -1;
1987 goto end_no_session;
1988 }
1989
1990 /*
1991 * Publish every pending stream in the connection recv list which are
1992 * now ready to be used by the viewer.
1993 */
1994 publish_connection_local_streams(conn);
1995
1996 memset(&reply, 0, sizeof(reply));
1997 reply.ret_code = htobe32(LTTNG_OK);
1998 send_ret = conn->sock->ops->sendmsg(conn->sock, &reply, sizeof(reply), 0);
1999 if (send_ret < 0) {
2000 ERR("Relay sending sent_stream reply");
2001 ret = send_ret;
2002 } else {
2003 /* Success. */
2004 ret = 0;
2005 }
2006
2007 end_no_session:
2008 return ret;
2009 }
2010
2011 /*
2012 * Process the commands received on the control socket
2013 */
2014 static int relay_process_control(struct lttcomm_relayd_hdr *recv_hdr,
2015 struct relay_connection *conn)
2016 {
2017 int ret = 0;
2018
2019 switch (be32toh(recv_hdr->cmd)) {
2020 case RELAYD_CREATE_SESSION:
2021 ret = relay_create_session(recv_hdr, conn);
2022 break;
2023 case RELAYD_ADD_STREAM:
2024 ret = relay_add_stream(recv_hdr, conn);
2025 break;
2026 case RELAYD_START_DATA:
2027 ret = relay_start(recv_hdr, conn);
2028 break;
2029 case RELAYD_SEND_METADATA:
2030 ret = relay_recv_metadata(recv_hdr, conn);
2031 break;
2032 case RELAYD_VERSION:
2033 ret = relay_send_version(recv_hdr, conn);
2034 break;
2035 case RELAYD_CLOSE_STREAM:
2036 ret = relay_close_stream(recv_hdr, conn);
2037 break;
2038 case RELAYD_DATA_PENDING:
2039 ret = relay_data_pending(recv_hdr, conn);
2040 break;
2041 case RELAYD_QUIESCENT_CONTROL:
2042 ret = relay_quiescent_control(recv_hdr, conn);
2043 break;
2044 case RELAYD_BEGIN_DATA_PENDING:
2045 ret = relay_begin_data_pending(recv_hdr, conn);
2046 break;
2047 case RELAYD_END_DATA_PENDING:
2048 ret = relay_end_data_pending(recv_hdr, conn);
2049 break;
2050 case RELAYD_SEND_INDEX:
2051 ret = relay_recv_index(recv_hdr, conn);
2052 break;
2053 case RELAYD_STREAMS_SENT:
2054 ret = relay_streams_sent(recv_hdr, conn);
2055 break;
2056 case RELAYD_UPDATE_SYNC_INFO:
2057 default:
2058 ERR("Received unknown command (%u)", be32toh(recv_hdr->cmd));
2059 relay_unknown_command(conn);
2060 ret = -1;
2061 goto end;
2062 }
2063
2064 end:
2065 return ret;
2066 }
2067
2068 /*
2069 * Handle index for a data stream.
2070 *
2071 * Called with the stream lock held.
2072 *
2073 * Return 0 on success else a negative value.
2074 */
2075 static int handle_index_data(struct relay_stream *stream, uint64_t net_seq_num,
2076 int rotate_index)
2077 {
2078 int ret = 0;
2079 uint64_t data_offset;
2080 struct relay_index *index;
2081
2082 /* Get data offset because we are about to update the index. */
2083 data_offset = htobe64(stream->tracefile_size_current);
2084
2085 DBG("handle_index_data: stream %" PRIu64 " net_seq_num %" PRIu64 " data offset %" PRIu64,
2086 stream->stream_handle, net_seq_num, stream->tracefile_size_current);
2087
2088 /*
2089 * Lookup for an existing index for that stream id/sequence
2090 * number. If it exists, the control thread has already received the
2091 * data for it, thus we need to write it to disk.
2092 */
2093 index = relay_index_get_by_id_or_create(stream, net_seq_num);
2094 if (!index) {
2095 ret = -1;
2096 goto end;
2097 }
2098
2099 if (rotate_index || !stream->index_fd) {
2100 int fd;
2101
2102 /* Put ref on previous index_fd. */
2103 if (stream->index_fd) {
2104 stream_fd_put(stream->index_fd);
2105 stream->index_fd = NULL;
2106 }
2107
2108 fd = index_create_file(stream->path_name, stream->channel_name,
2109 -1, -1, stream->tracefile_size,
2110 tracefile_array_get_file_index_head(stream->tfa));
2111 if (fd < 0) {
2112 ret = -1;
2113 /* Put self-ref for this index due to error. */
2114 relay_index_put(index);
2115 goto end;
2116 }
2117 stream->index_fd = stream_fd_create(fd);
2118 if (!stream->index_fd) {
2119 ret = -1;
2120 if (close(fd)) {
2121 PERROR("Error closing FD %d", fd);
2122 }
2123 /* Put self-ref for this index due to error. */
2124 relay_index_put(index);
2125 /* Will put the local ref. */
2126 goto end;
2127 }
2128 }
2129
2130 if (relay_index_set_fd(index, stream->index_fd, data_offset)) {
2131 ret = -1;
2132 /* Put self-ref for this index due to error. */
2133 relay_index_put(index);
2134 goto end;
2135 }
2136
2137 ret = relay_index_try_flush(index);
2138 if (ret == 0) {
2139 tracefile_array_commit_seq(stream->tfa);
2140 stream->index_received_seqcount++;
2141 } else if (ret > 0) {
2142 /* No flush. */
2143 ret = 0;
2144 } else {
2145 /* Put self-ref for this index due to error. */
2146 relay_index_put(index);
2147 ret = -1;
2148 }
2149 end:
2150 return ret;
2151 }
2152
2153 /*
2154 * relay_process_data: Process the data received on the data socket
2155 */
2156 static int relay_process_data(struct relay_connection *conn)
2157 {
2158 int ret = 0, rotate_index = 0;
2159 ssize_t size_ret;
2160 struct relay_stream *stream;
2161 struct lttcomm_relayd_data_hdr data_hdr;
2162 uint64_t stream_id;
2163 uint64_t net_seq_num;
2164 uint32_t data_size;
2165 struct relay_session *session;
2166 bool new_stream = false, close_requested = false;
2167
2168 ret = conn->sock->ops->recvmsg(conn->sock, &data_hdr,
2169 sizeof(struct lttcomm_relayd_data_hdr), 0);
2170 if (ret <= 0) {
2171 if (ret == 0) {
2172 /* Orderly shutdown. Not necessary to print an error. */
2173 DBG("Socket %d did an orderly shutdown", conn->sock->fd);
2174 } else {
2175 ERR("Unable to receive data header on sock %d", conn->sock->fd);
2176 }
2177 ret = -1;
2178 goto end;
2179 }
2180
2181 stream_id = be64toh(data_hdr.stream_id);
2182 stream = stream_get_by_id(stream_id);
2183 if (!stream) {
2184 ERR("relay_process_data: Cannot find stream %" PRIu64, stream_id);
2185 ret = -1;
2186 goto end;
2187 }
2188 session = stream->trace->session;
2189 data_size = be32toh(data_hdr.data_size);
2190 if (data_buffer_size < data_size) {
2191 char *tmp_data_ptr;
2192
2193 tmp_data_ptr = realloc(data_buffer, data_size);
2194 if (!tmp_data_ptr) {
2195 ERR("Allocating data buffer");
2196 free(data_buffer);
2197 ret = -1;
2198 goto end_stream_put;
2199 }
2200 data_buffer = tmp_data_ptr;
2201 data_buffer_size = data_size;
2202 }
2203 memset(data_buffer, 0, data_size);
2204
2205 net_seq_num = be64toh(data_hdr.net_seq_num);
2206
2207 DBG3("Receiving data of size %u for stream id %" PRIu64 " seqnum %" PRIu64,
2208 data_size, stream_id, net_seq_num);
2209 ret = conn->sock->ops->recvmsg(conn->sock, data_buffer, data_size, 0);
2210 if (ret <= 0) {
2211 if (ret == 0) {
2212 /* Orderly shutdown. Not necessary to print an error. */
2213 DBG("Socket %d did an orderly shutdown", conn->sock->fd);
2214 } else {
2215 ERR("Socket %d error %d", conn->sock->fd, ret);
2216 }
2217 ret = -1;
2218 goto end_stream_put;
2219 }
2220
2221 pthread_mutex_lock(&stream->lock);
2222
2223 /* Check if a rotation is needed. */
2224 if (stream->tracefile_size > 0 &&
2225 (stream->tracefile_size_current + data_size) >
2226 stream->tracefile_size) {
2227 uint64_t old_id, new_id;
2228
2229 old_id = tracefile_array_get_file_index_head(stream->tfa);
2230 tracefile_array_file_rotate(stream->tfa);
2231
2232 /* new_id is updated by utils_rotate_stream_file. */
2233 new_id = old_id;
2234
2235 ret = utils_rotate_stream_file(stream->path_name,
2236 stream->channel_name, stream->tracefile_size,
2237 stream->tracefile_count, -1,
2238 -1, stream->stream_fd->fd,
2239 &new_id, &stream->stream_fd->fd);
2240 if (ret < 0) {
2241 ERR("Rotating stream output file");
2242 goto end_stream_unlock;
2243 }
2244 /*
2245 * Reset current size because we just performed a stream
2246 * rotation.
2247 */
2248 stream->tracefile_size_current = 0;
2249 rotate_index = 1;
2250 }
2251
2252 /*
2253 * Index are handled in protocol version 2.4 and above. Also,
2254 * snapshot and index are NOT supported.
2255 */
2256 if (session->minor >= 4 && !session->snapshot) {
2257 ret = handle_index_data(stream, net_seq_num, rotate_index);
2258 if (ret < 0) {
2259 ERR("handle_index_data: fail stream %" PRIu64 " net_seq_num %" PRIu64 " ret %d",
2260 stream->stream_handle, net_seq_num, ret);
2261 goto end_stream_unlock;
2262 }
2263 }
2264
2265 /* Write data to stream output fd. */
2266 size_ret = lttng_write(stream->stream_fd->fd, data_buffer, data_size);
2267 if (size_ret < data_size) {
2268 ERR("Relay error writing data to file");
2269 ret = -1;
2270 goto end_stream_unlock;
2271 }
2272
2273 DBG2("Relay wrote %zd bytes to tracefile for stream id %" PRIu64,
2274 size_ret, stream->stream_handle);
2275
2276 ret = write_padding_to_file(stream->stream_fd->fd,
2277 be32toh(data_hdr.padding_size));
2278 if (ret < 0) {
2279 ERR("write_padding_to_file: fail stream %" PRIu64 " net_seq_num %" PRIu64 " ret %d",
2280 stream->stream_handle, net_seq_num, ret);
2281 goto end_stream_unlock;
2282 }
2283 stream->tracefile_size_current +=
2284 data_size + be32toh(data_hdr.padding_size);
2285 if (stream->prev_seq == -1ULL) {
2286 new_stream = true;
2287 }
2288
2289 stream->prev_seq = net_seq_num;
2290
2291 end_stream_unlock:
2292 close_requested = stream->close_requested;
2293 pthread_mutex_unlock(&stream->lock);
2294 if (close_requested) {
2295 try_stream_close(stream);
2296 }
2297
2298 if (new_stream) {
2299 pthread_mutex_lock(&session->lock);
2300 uatomic_set(&session->new_streams, 1);
2301 pthread_mutex_unlock(&session->lock);
2302 }
2303 end_stream_put:
2304 stream_put(stream);
2305 end:
2306 return ret;
2307 }
2308
2309 static void cleanup_connection_pollfd(struct lttng_poll_event *events, int pollfd)
2310 {
2311 int ret;
2312
2313 (void) lttng_poll_del(events, pollfd);
2314
2315 ret = close(pollfd);
2316 if (ret < 0) {
2317 ERR("Closing pollfd %d", pollfd);
2318 }
2319 }
2320
2321 static void relay_thread_close_connection(struct lttng_poll_event *events,
2322 int pollfd, struct relay_connection *conn)
2323 {
2324 const char *type_str;
2325
2326 switch (conn->type) {
2327 case RELAY_DATA:
2328 type_str = "Data";
2329 break;
2330 case RELAY_CONTROL:
2331 type_str = "Control";
2332 break;
2333 case RELAY_VIEWER_COMMAND:
2334 type_str = "Viewer Command";
2335 break;
2336 case RELAY_VIEWER_NOTIFICATION:
2337 type_str = "Viewer Notification";
2338 break;
2339 default:
2340 type_str = "Unknown";
2341 }
2342 cleanup_connection_pollfd(events, pollfd);
2343 connection_put(conn);
2344 DBG("%s connection closed with %d", type_str, pollfd);
2345 }
2346
2347 /*
2348 * This thread does the actual work
2349 */
2350 static void *relay_thread_worker(void *data)
2351 {
2352 int ret, err = -1, last_seen_data_fd = -1;
2353 uint32_t nb_fd;
2354 struct lttng_poll_event events;
2355 struct lttng_ht *relay_connections_ht;
2356 struct lttng_ht_iter iter;
2357 struct lttcomm_relayd_hdr recv_hdr;
2358 struct relay_connection *destroy_conn = NULL;
2359
2360 DBG("[thread] Relay worker started");
2361
2362 rcu_register_thread();
2363
2364 health_register(health_relayd, HEALTH_RELAYD_TYPE_WORKER);
2365
2366 if (testpoint(relayd_thread_worker)) {
2367 goto error_testpoint;
2368 }
2369
2370 health_code_update();
2371
2372 /* table of connections indexed on socket */
2373 relay_connections_ht = lttng_ht_new(0, LTTNG_HT_TYPE_ULONG);
2374 if (!relay_connections_ht) {
2375 goto relay_connections_ht_error;
2376 }
2377
2378 ret = create_thread_poll_set(&events, 2);
2379 if (ret < 0) {
2380 goto error_poll_create;
2381 }
2382
2383 ret = lttng_poll_add(&events, relay_conn_pipe[0], LPOLLIN | LPOLLRDHUP);
2384 if (ret < 0) {
2385 goto error;
2386 }
2387
2388 restart:
2389 while (1) {
2390 int idx = -1, i, seen_control = 0, last_notdel_data_fd = -1;
2391
2392 health_code_update();
2393
2394 /* Infinite blocking call, waiting for transmission */
2395 DBG3("Relayd worker thread polling...");
2396 health_poll_entry();
2397 ret = lttng_poll_wait(&events, -1);
2398 health_poll_exit();
2399 if (ret < 0) {
2400 /*
2401 * Restart interrupted system call.
2402 */
2403 if (errno == EINTR) {
2404 goto restart;
2405 }
2406 goto error;
2407 }
2408
2409 nb_fd = ret;
2410
2411 /*
2412 * Process control. The control connection is
2413 * prioritized so we don't starve it with high
2414 * throughput tracing data on the data connection.
2415 */
2416 for (i = 0; i < nb_fd; i++) {
2417 /* Fetch once the poll data */
2418 uint32_t revents = LTTNG_POLL_GETEV(&events, i);
2419 int pollfd = LTTNG_POLL_GETFD(&events, i);
2420
2421 health_code_update();
2422
2423 if (!revents) {
2424 /*
2425 * No activity for this FD (poll
2426 * implementation).
2427 */
2428 continue;
2429 }
2430
2431 /* Thread quit pipe has been closed. Killing thread. */
2432 ret = check_thread_quit_pipe(pollfd, revents);
2433 if (ret) {
2434 err = 0;
2435 goto exit;
2436 }
2437
2438 /* Inspect the relay conn pipe for new connection */
2439 if (pollfd == relay_conn_pipe[0]) {
2440 if (revents & LPOLLIN) {
2441 struct relay_connection *conn;
2442
2443 ret = lttng_read(relay_conn_pipe[0], &conn, sizeof(conn));
2444 if (ret < 0) {
2445 goto error;
2446 }
2447 lttng_poll_add(&events, conn->sock->fd,
2448 LPOLLIN | LPOLLRDHUP);
2449 connection_ht_add(relay_connections_ht, conn);
2450 DBG("Connection socket %d added", conn->sock->fd);
2451 } else if (revents & (LPOLLERR | LPOLLHUP | LPOLLRDHUP)) {
2452 ERR("Relay connection pipe error");
2453 goto error;
2454 } else {
2455 ERR("Unexpected poll events %u for sock %d", revents, pollfd);
2456 goto error;
2457 }
2458 } else {
2459 struct relay_connection *ctrl_conn;
2460
2461 ctrl_conn = connection_get_by_sock(relay_connections_ht, pollfd);
2462 /* If not found, there is a synchronization issue. */
2463 assert(ctrl_conn);
2464
2465 if (ctrl_conn->type == RELAY_DATA) {
2466 if (revents & LPOLLIN) {
2467 /*
2468 * Flag the last seen data fd not deleted. It will be
2469 * used as the last seen fd if any fd gets deleted in
2470 * this first loop.
2471 */
2472 last_notdel_data_fd = pollfd;
2473 }
2474 goto put_ctrl_connection;
2475 }
2476 assert(ctrl_conn->type == RELAY_CONTROL);
2477
2478 if (revents & LPOLLIN) {
2479 ret = ctrl_conn->sock->ops->recvmsg(ctrl_conn->sock,
2480 &recv_hdr, sizeof(recv_hdr), 0);
2481 if (ret <= 0) {
2482 /* Connection closed */
2483 relay_thread_close_connection(&events, pollfd,
2484 ctrl_conn);
2485 } else {
2486 ret = relay_process_control(&recv_hdr, ctrl_conn);
2487 if (ret < 0) {
2488 /* Clear the session on error. */
2489 relay_thread_close_connection(&events,
2490 pollfd, ctrl_conn);
2491 }
2492 seen_control = 1;
2493 }
2494 } else if (revents & (LPOLLERR | LPOLLHUP | LPOLLRDHUP)) {
2495 relay_thread_close_connection(&events,
2496 pollfd, ctrl_conn);
2497 if (last_seen_data_fd == pollfd) {
2498 last_seen_data_fd = last_notdel_data_fd;
2499 }
2500 } else {
2501 ERR("Unexpected poll events %u for control sock %d",
2502 revents, pollfd);
2503 connection_put(ctrl_conn);
2504 goto error;
2505 }
2506 put_ctrl_connection:
2507 connection_put(ctrl_conn);
2508 }
2509 }
2510
2511 /*
2512 * The last loop handled a control request, go back to poll to make
2513 * sure we prioritise the control socket.
2514 */
2515 if (seen_control) {
2516 continue;
2517 }
2518
2519 if (last_seen_data_fd >= 0) {
2520 for (i = 0; i < nb_fd; i++) {
2521 int pollfd = LTTNG_POLL_GETFD(&events, i);
2522
2523 health_code_update();
2524
2525 if (last_seen_data_fd == pollfd) {
2526 idx = i;
2527 break;
2528 }
2529 }
2530 }
2531
2532 /* Process data connection. */
2533 for (i = idx + 1; i < nb_fd; i++) {
2534 /* Fetch the poll data. */
2535 uint32_t revents = LTTNG_POLL_GETEV(&events, i);
2536 int pollfd = LTTNG_POLL_GETFD(&events, i);
2537 struct relay_connection *data_conn;
2538
2539 health_code_update();
2540
2541 if (!revents) {
2542 /* No activity for this FD (poll implementation). */
2543 continue;
2544 }
2545
2546 /* Skip the command pipe. It's handled in the first loop. */
2547 if (pollfd == relay_conn_pipe[0]) {
2548 continue;
2549 }
2550
2551 data_conn = connection_get_by_sock(relay_connections_ht, pollfd);
2552 if (!data_conn) {
2553 /* Skip it. Might be removed before. */
2554 continue;
2555 }
2556 if (data_conn->type == RELAY_CONTROL) {
2557 goto put_data_connection;
2558 }
2559 assert(data_conn->type == RELAY_DATA);
2560
2561 if (revents & LPOLLIN) {
2562 ret = relay_process_data(data_conn);
2563 /* Connection closed */
2564 if (ret < 0) {
2565 relay_thread_close_connection(&events, pollfd,
2566 data_conn);
2567 /*
2568 * Every goto restart call sets the last seen fd where
2569 * here we don't really care since we gracefully
2570 * continue the loop after the connection is deleted.
2571 */
2572 } else {
2573 /* Keep last seen port. */
2574 last_seen_data_fd = pollfd;
2575 connection_put(data_conn);
2576 goto restart;
2577 }
2578 } else if (revents & (LPOLLERR | LPOLLHUP | LPOLLRDHUP)) {
2579 relay_thread_close_connection(&events, pollfd,
2580 data_conn);
2581 } else {
2582 ERR("Unknown poll events %u for data sock %d",
2583 revents, pollfd);
2584 }
2585 put_data_connection:
2586 connection_put(data_conn);
2587 }
2588 last_seen_data_fd = -1;
2589 }
2590
2591 /* Normal exit, no error */
2592 ret = 0;
2593
2594 exit:
2595 error:
2596 /* Cleanup reamaining connection object. */
2597 rcu_read_lock();
2598 cds_lfht_for_each_entry(relay_connections_ht->ht, &iter.iter,
2599 destroy_conn,
2600 sock_n.node) {
2601 health_code_update();
2602 /*
2603 * No need to grab another ref, because we own
2604 * destroy_conn.
2605 */
2606 relay_thread_close_connection(&events, destroy_conn->sock->fd,
2607 destroy_conn);
2608 }
2609 rcu_read_unlock();
2610
2611 lttng_poll_clean(&events);
2612 error_poll_create:
2613 lttng_ht_destroy(relay_connections_ht);
2614 relay_connections_ht_error:
2615 /* Close relay conn pipes */
2616 utils_close_pipe(relay_conn_pipe);
2617 if (err) {
2618 DBG("Thread exited with error");
2619 }
2620 DBG("Worker thread cleanup complete");
2621 free(data_buffer);
2622 error_testpoint:
2623 if (err) {
2624 health_error();
2625 ERR("Health error occurred in %s", __func__);
2626 }
2627 health_unregister(health_relayd);
2628 rcu_unregister_thread();
2629 lttng_relay_stop_threads();
2630 return NULL;
2631 }
2632
2633 /*
2634 * Create the relay command pipe to wake thread_manage_apps.
2635 * Closed in cleanup().
2636 */
2637 static int create_relay_conn_pipe(void)
2638 {
2639 int ret;
2640
2641 ret = utils_create_pipe_cloexec(relay_conn_pipe);
2642
2643 return ret;
2644 }
2645
2646 /*
2647 * main
2648 */
2649 int main(int argc, char **argv)
2650 {
2651 int ret = 0, retval = 0;
2652 void *status;
2653
2654 /* Parse arguments */
2655 progname = argv[0];
2656 if (set_options(argc, argv)) {
2657 retval = -1;
2658 goto exit_options;
2659 }
2660
2661 if (set_signal_handler()) {
2662 retval = -1;
2663 goto exit_options;
2664 }
2665
2666 /* Try to create directory if -o, --output is specified. */
2667 if (opt_output_path) {
2668 if (*opt_output_path != '/') {
2669 ERR("Please specify an absolute path for -o, --output PATH");
2670 retval = -1;
2671 goto exit_options;
2672 }
2673
2674 ret = utils_mkdir_recursive(opt_output_path, S_IRWXU | S_IRWXG,
2675 -1, -1);
2676 if (ret < 0) {
2677 ERR("Unable to create %s", opt_output_path);
2678 retval = -1;
2679 goto exit_options;
2680 }
2681 }
2682
2683 /* Daemonize */
2684 if (opt_daemon || opt_background) {
2685 int i;
2686
2687 ret = lttng_daemonize(&child_ppid, &recv_child_signal,
2688 !opt_background);
2689 if (ret < 0) {
2690 retval = -1;
2691 goto exit_options;
2692 }
2693
2694 /*
2695 * We are in the child. Make sure all other file
2696 * descriptors are closed, in case we are called with
2697 * more opened file descriptors than the standard ones.
2698 */
2699 for (i = 3; i < sysconf(_SC_OPEN_MAX); i++) {
2700 (void) close(i);
2701 }
2702 }
2703
2704
2705 /* Initialize thread health monitoring */
2706 health_relayd = health_app_create(NR_HEALTH_RELAYD_TYPES);
2707 if (!health_relayd) {
2708 PERROR("health_app_create error");
2709 retval = -1;
2710 goto exit_health_app_create;
2711 }
2712
2713 /* Create thread quit pipe */
2714 if (init_thread_quit_pipe()) {
2715 retval = -1;
2716 goto exit_init_data;
2717 }
2718
2719 /* Check if daemon is UID = 0 */
2720 if (!getuid()) {
2721 if (control_uri->port < 1024 || data_uri->port < 1024 || live_uri->port < 1024) {
2722 ERR("Need to be root to use ports < 1024");
2723 retval = -1;
2724 goto exit_init_data;
2725 }
2726 }
2727
2728 /* Setup the thread apps communication pipe. */
2729 if (create_relay_conn_pipe()) {
2730 retval = -1;
2731 goto exit_init_data;
2732 }
2733
2734 /* Init relay command queue. */
2735 cds_wfcq_init(&relay_conn_queue.head, &relay_conn_queue.tail);
2736
2737 /* Set up max poll set size */
2738 if (lttng_poll_set_max_size()) {
2739 retval = -1;
2740 goto exit_init_data;
2741 }
2742
2743 /* Initialize communication library */
2744 lttcomm_init();
2745 lttcomm_inet_init();
2746
2747 /* tables of sessions indexed by session ID */
2748 sessions_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
2749 if (!sessions_ht) {
2750 retval = -1;
2751 goto exit_init_data;
2752 }
2753
2754 /* tables of streams indexed by stream ID */
2755 relay_streams_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
2756 if (!relay_streams_ht) {
2757 retval = -1;
2758 goto exit_init_data;
2759 }
2760
2761 /* tables of streams indexed by stream ID */
2762 viewer_streams_ht = lttng_ht_new(0, LTTNG_HT_TYPE_U64);
2763 if (!viewer_streams_ht) {
2764 retval = -1;
2765 goto exit_init_data;
2766 }
2767
2768 ret = utils_create_pipe(health_quit_pipe);
2769 if (ret) {
2770 retval = -1;
2771 goto exit_health_quit_pipe;
2772 }
2773
2774 /* Create thread to manage the client socket */
2775 ret = pthread_create(&health_thread, NULL,
2776 thread_manage_health, (void *) NULL);
2777 if (ret) {
2778 errno = ret;
2779 PERROR("pthread_create health");
2780 retval = -1;
2781 goto exit_health_thread;
2782 }
2783
2784 /* Setup the dispatcher thread */
2785 ret = pthread_create(&dispatcher_thread, NULL,
2786 relay_thread_dispatcher, (void *) NULL);
2787 if (ret) {
2788 errno = ret;
2789 PERROR("pthread_create dispatcher");
2790 retval = -1;
2791 goto exit_dispatcher_thread;
2792 }
2793
2794 /* Setup the worker thread */
2795 ret = pthread_create(&worker_thread, NULL,
2796 relay_thread_worker, NULL);
2797 if (ret) {
2798 errno = ret;
2799 PERROR("pthread_create worker");
2800 retval = -1;
2801 goto exit_worker_thread;
2802 }
2803
2804 /* Setup the listener thread */
2805 ret = pthread_create(&listener_thread, NULL,
2806 relay_thread_listener, (void *) NULL);
2807 if (ret) {
2808 errno = ret;
2809 PERROR("pthread_create listener");
2810 retval = -1;
2811 goto exit_listener_thread;
2812 }
2813
2814 ret = relayd_live_create(live_uri);
2815 if (ret) {
2816 ERR("Starting live viewer threads");
2817 retval = -1;
2818 goto exit_live;
2819 }
2820
2821 /*
2822 * This is where we start awaiting program completion (e.g. through
2823 * signal that asks threads to teardown).
2824 */
2825
2826 ret = relayd_live_join();
2827 if (ret) {
2828 retval = -1;
2829 }
2830 exit_live:
2831
2832 ret = pthread_join(listener_thread, &status);
2833 if (ret) {
2834 errno = ret;
2835 PERROR("pthread_join listener_thread");
2836 retval = -1;
2837 }
2838
2839 exit_listener_thread:
2840 ret = pthread_join(worker_thread, &status);
2841 if (ret) {
2842 errno = ret;
2843 PERROR("pthread_join worker_thread");
2844 retval = -1;
2845 }
2846
2847 exit_worker_thread:
2848 ret = pthread_join(dispatcher_thread, &status);
2849 if (ret) {
2850 errno = ret;
2851 PERROR("pthread_join dispatcher_thread");
2852 retval = -1;
2853 }
2854 exit_dispatcher_thread:
2855
2856 ret = pthread_join(health_thread, &status);
2857 if (ret) {
2858 errno = ret;
2859 PERROR("pthread_join health_thread");
2860 retval = -1;
2861 }
2862 exit_health_thread:
2863
2864 utils_close_pipe(health_quit_pipe);
2865 exit_health_quit_pipe:
2866
2867 exit_init_data:
2868 health_app_destroy(health_relayd);
2869 exit_health_app_create:
2870 exit_options:
2871 relayd_cleanup();
2872
2873 /* Ensure all prior call_rcu are done. */
2874 rcu_barrier();
2875
2876 if (!retval) {
2877 exit(EXIT_SUCCESS);
2878 } else {
2879 exit(EXIT_FAILURE);
2880 }
2881 }
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