Remove leftover structure in ust-abi.h
[lttng-ust.git] / liblttng-ust / lttng-ust-comm.c
CommitLineData
2691221a
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1/*
2 * lttng-ust-comm.c
3 *
4 * Copyright (C) 2011 David Goulet <david.goulet@polymtl.ca>
5 * Copyright (C) 2011 Mathieu Desnoyers <mathieu.desnoyers@efficios.com>
6 *
7 * This library is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU Lesser General Public
9 * License as published by the Free Software Foundation; only
10 * version 2.1 of the License.
11 *
12 * This library is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
15 * Lesser General Public License for more details.
16 *
17 * You should have received a copy of the GNU Lesser General Public
18 * License along with this library; if not, write to the Free Software
19 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
20 */
21
80e2814b 22#define _LGPL_SOURCE
2691221a
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23#include <sys/types.h>
24#include <sys/socket.h>
2629549e 25#include <sys/prctl.h>
7fc90dca
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26#include <sys/mman.h>
27#include <sys/stat.h>
58d4b2a2
MD
28#include <sys/types.h>
29#include <sys/wait.h>
7fc90dca 30#include <fcntl.h>
2691221a
MD
31#include <unistd.h>
32#include <errno.h>
d9e99d10 33#include <pthread.h>
11ff9c7d
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34#include <semaphore.h>
35#include <time.h>
1ea11eab 36#include <assert.h>
e822f505 37#include <signal.h>
95259bd0 38#include <urcu/uatomic.h>
80e2814b 39#include <urcu/futex.h>
c117fb1b 40#include <urcu/compiler.h>
1ea11eab 41
4318ae1b 42#include <lttng/ust-events.h>
4318ae1b 43#include <lttng/ust-abi.h>
4318ae1b 44#include <lttng/ust.h>
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MD
45#include <ust-comm.h>
46#include <usterr-signal-safe.h>
47#include "tracepoint-internal.h"
b751f722 48#include "ltt-tracer-core.h"
edaa1431
MD
49
50/*
51 * Has lttng ust comm constructor been called ?
52 */
53static int initialized;
54
1ea11eab 55/*
17dfb34b
MD
56 * The ust_lock/ust_unlock lock is used as a communication thread mutex.
57 * Held when handling a command, also held by fork() to deal with
58 * removal of threads, and by exit path.
1ea11eab 59 */
1ea11eab
MD
60
61/* Should the ust comm thread quit ? */
62static int lttng_ust_comm_should_quit;
63
11ff9c7d
MD
64/*
65 * Wait for either of these before continuing to the main
66 * program:
67 * - the register_done message from sessiond daemon
68 * (will let the sessiond daemon enable sessions before main
69 * starts.)
70 * - sessiond daemon is not reachable.
71 * - timeout (ensuring applications are resilient to session
72 * daemon problems).
73 */
74static sem_t constructor_wait;
950aab0c
MD
75/*
76 * Doing this for both the global and local sessiond.
77 */
95259bd0 78static int sem_count = { 2 };
11ff9c7d 79
1ea11eab
MD
80/*
81 * Info about socket and associated listener thread.
82 */
83struct sock_info {
11ff9c7d 84 const char *name;
1ea11eab 85 pthread_t ust_listener; /* listener thread */
46050b1a 86 int root_handle;
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MD
87 int constructor_sem_posted;
88 int allowed;
44e073f5 89 int global;
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90
91 char sock_path[PATH_MAX];
92 int socket;
93
94 char wait_shm_path[PATH_MAX];
95 char *wait_shm_mmap;
1ea11eab 96};
2691221a
MD
97
98/* Socket from app (connect) to session daemon (listen) for communication */
1ea11eab 99struct sock_info global_apps = {
11ff9c7d 100 .name = "global",
44e073f5 101 .global = 1,
7fc90dca 102
46050b1a 103 .root_handle = -1,
8d20bf54 104 .allowed = 1,
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MD
105
106 .sock_path = DEFAULT_GLOBAL_APPS_UNIX_SOCK,
107 .socket = -1,
108
109 .wait_shm_path = DEFAULT_GLOBAL_APPS_WAIT_SHM_PATH,
1ea11eab 110};
2691221a
MD
111
112/* TODO: allow global_apps_sock_path override */
113
1ea11eab 114struct sock_info local_apps = {
11ff9c7d 115 .name = "local",
44e073f5 116 .global = 0,
46050b1a 117 .root_handle = -1,
8d20bf54 118 .allowed = 0, /* Check setuid bit first */
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119
120 .socket = -1,
1ea11eab 121};
2691221a 122
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123static int wait_poll_fallback;
124
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125extern void ltt_ring_buffer_client_overwrite_init(void);
126extern void ltt_ring_buffer_client_discard_init(void);
127extern void ltt_ring_buffer_metadata_client_init(void);
128extern void ltt_ring_buffer_client_overwrite_exit(void);
129extern void ltt_ring_buffer_client_discard_exit(void);
130extern void ltt_ring_buffer_metadata_client_exit(void);
131
2691221a 132static
8d20bf54 133int setup_local_apps(void)
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MD
134{
135 const char *home_dir;
7fc90dca 136 uid_t uid;
2691221a 137
7fc90dca 138 uid = getuid();
8d20bf54
MD
139 /*
140 * Disallow per-user tracing for setuid binaries.
141 */
7fc90dca 142 if (uid != geteuid()) {
8d20bf54 143 local_apps.allowed = 0;
d0a1ae63 144 return 0;
8d20bf54
MD
145 } else {
146 local_apps.allowed = 1;
147 }
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MD
148 home_dir = (const char *) getenv("HOME");
149 if (!home_dir)
150 return -ENOENT;
1ea11eab 151 snprintf(local_apps.sock_path, PATH_MAX,
2691221a 152 DEFAULT_HOME_APPS_UNIX_SOCK, home_dir);
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153 snprintf(local_apps.wait_shm_path, PATH_MAX,
154 DEFAULT_HOME_APPS_WAIT_SHM_PATH, uid);
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155 return 0;
156}
157
158static
159int register_app_to_sessiond(int socket)
160{
161 ssize_t ret;
2629549e 162 int prctl_ret;
2691221a 163 struct {
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164 uint32_t major;
165 uint32_t minor;
2691221a 166 pid_t pid;
5c33bde8 167 pid_t ppid;
2691221a 168 uid_t uid;
83610856 169 gid_t gid;
c117fb1b 170 uint32_t bits_per_long;
2629549e 171 char name[16]; /* process name */
2691221a
MD
172 } reg_msg;
173
e44418f3
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174 reg_msg.major = LTTNG_UST_COMM_VERSION_MAJOR;
175 reg_msg.minor = LTTNG_UST_COMM_VERSION_MINOR;
2691221a 176 reg_msg.pid = getpid();
5c33bde8 177 reg_msg.ppid = getppid();
2691221a 178 reg_msg.uid = getuid();
83610856 179 reg_msg.gid = getgid();
c117fb1b 180 reg_msg.bits_per_long = CAA_BITS_PER_LONG;
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181 prctl_ret = prctl(PR_GET_NAME, (unsigned long) reg_msg.name, 0, 0, 0);
182 if (prctl_ret) {
183 ERR("Error executing prctl");
184 return -errno;
185 }
2691221a 186
57773204 187 ret = ustcomm_send_unix_sock(socket, &reg_msg, sizeof(reg_msg));
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188 if (ret >= 0 && ret != sizeof(reg_msg))
189 return -EIO;
190 return ret;
191}
192
d9e99d10 193static
57773204 194int send_reply(int sock, struct ustcomm_ust_reply *lur)
d9e99d10 195{
9eb62b9c 196 ssize_t len;
d3a492d1 197
57773204 198 len = ustcomm_send_unix_sock(sock, lur, sizeof(*lur));
d3a492d1 199 switch (len) {
a4be8962 200 case sizeof(*lur):
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201 DBG("message successfully sent");
202 return 0;
203 case -1:
204 if (errno == ECONNRESET) {
205 printf("remote end closed connection\n");
206 return 0;
207 }
208 return -1;
209 default:
210 printf("incorrect message size: %zd\n", len);
211 return -1;
212 }
213}
214
215static
edaa1431 216int handle_register_done(struct sock_info *sock_info)
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217{
218 int ret;
219
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220 if (sock_info->constructor_sem_posted)
221 return 0;
222 sock_info->constructor_sem_posted = 1;
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223 if (uatomic_read(&sem_count) <= 0) {
224 return 0;
225 }
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226 ret = uatomic_add_return(&sem_count, -1);
227 if (ret == 0) {
228 ret = sem_post(&constructor_wait);
229 assert(!ret);
230 }
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231 return 0;
232}
233
234static
235int handle_message(struct sock_info *sock_info,
57773204 236 int sock, struct ustcomm_ust_msg *lum)
d3a492d1 237{
1ea11eab 238 int ret = 0;
b61ce3b2 239 const struct lttng_ust_objd_ops *ops;
57773204 240 struct ustcomm_ust_reply lur;
193183fb 241 int shm_fd, wait_fd;
ef9ff354 242 union ust_args args;
1ea11eab 243
17dfb34b 244 ust_lock();
1ea11eab 245
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246 memset(&lur, 0, sizeof(lur));
247
1ea11eab 248 if (lttng_ust_comm_should_quit) {
46050b1a 249 ret = -EPERM;
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250 goto end;
251 }
9eb62b9c 252
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253 ops = objd_ops(lum->handle);
254 if (!ops) {
255 ret = -ENOENT;
256 goto end;
1ea11eab 257 }
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MD
258
259 switch (lum->cmd) {
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260 case LTTNG_UST_REGISTER_DONE:
261 if (lum->handle == LTTNG_UST_ROOT_HANDLE)
edaa1431 262 ret = handle_register_done(sock_info);
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263 else
264 ret = -EINVAL;
265 break;
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MD
266 case LTTNG_UST_RELEASE:
267 if (lum->handle == LTTNG_UST_ROOT_HANDLE)
268 ret = -EPERM;
269 else
d4419b81 270 ret = lttng_ust_objd_unref(lum->handle);
d9e99d10
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271 break;
272 default:
46050b1a
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273 if (ops->cmd)
274 ret = ops->cmd(lum->handle, lum->cmd,
ef9ff354
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275 (unsigned long) &lum->u,
276 &args);
46050b1a
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277 else
278 ret = -ENOSYS;
279 break;
d9e99d10 280 }
46050b1a 281
1ea11eab 282end:
46050b1a
MD
283 lur.handle = lum->handle;
284 lur.cmd = lum->cmd;
285 lur.ret_val = ret;
286 if (ret >= 0) {
57773204 287 lur.ret_code = USTCOMM_OK;
46050b1a 288 } else {
57773204 289 //lur.ret_code = USTCOMM_SESSION_FAIL;
193183fb 290 lur.ret_code = ret;
46050b1a 291 }
193183fb
MD
292 switch (lum->cmd) {
293 case LTTNG_UST_STREAM:
381c0f1e
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294 /*
295 * Special-case reply to send stream info.
296 * Use lum.u output.
297 */
ef9ff354
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298 lur.u.stream.memory_map_size = *args.stream.memory_map_size;
299 shm_fd = *args.stream.shm_fd;
300 wait_fd = *args.stream.wait_fd;
193183fb 301 break;
824f40b8 302 case LTTNG_UST_METADATA:
193183fb 303 case LTTNG_UST_CHANNEL:
ef9ff354
MD
304 lur.u.channel.memory_map_size = *args.channel.memory_map_size;
305 shm_fd = *args.channel.shm_fd;
306 wait_fd = *args.channel.wait_fd;
193183fb 307 break;
23c8854a 308 case LTTNG_UST_TRACER_VERSION:
57773204
MD
309 lur.u.version = lum->u.version;
310 break;
b115631f 311 case LTTNG_UST_TRACEPOINT_LIST_GET:
cbef6901 312 memcpy(&lur.u.tracepoint, &lum->u.tracepoint, sizeof(lur.u.tracepoint));
b115631f 313 break;
381c0f1e 314 }
46050b1a 315 ret = send_reply(sock, &lur);
193183fb
MD
316 if (ret < 0) {
317 perror("error sending reply");
318 goto error;
319 }
46050b1a 320
824f40b8
MD
321 if ((lum->cmd == LTTNG_UST_STREAM
322 || lum->cmd == LTTNG_UST_CHANNEL
323 || lum->cmd == LTTNG_UST_METADATA)
57773204 324 && lur.ret_code == USTCOMM_OK) {
381c0f1e 325 /* we also need to send the file descriptors. */
57773204 326 ret = ustcomm_send_fds_unix_sock(sock,
193183fb 327 &shm_fd, &shm_fd,
381c0f1e
MD
328 1, sizeof(int));
329 if (ret < 0) {
330 perror("send shm_fd");
331 goto error;
332 }
57773204 333 ret = ustcomm_send_fds_unix_sock(sock,
193183fb 334 &wait_fd, &wait_fd,
381c0f1e
MD
335 1, sizeof(int));
336 if (ret < 0) {
337 perror("send wait_fd");
338 goto error;
339 }
340 }
ef9ff354
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341 /*
342 * We still have the memory map reference, and the fds have been
343 * sent to the sessiond. We can therefore close those fds.
344 */
345 if (lur.ret_code == USTCOMM_OK) {
346 switch (lum->cmd) {
347 case LTTNG_UST_STREAM:
348 if (shm_fd >= 0) {
349 ret = close(shm_fd);
350 if (ret) {
351 PERROR("Error closing stream shm_fd");
352 }
353 *args.stream.shm_fd = -1;
354 }
355 if (wait_fd >= 0) {
356 ret = close(wait_fd);
357 if (ret) {
358 PERROR("Error closing stream wait_fd");
359 }
360 *args.stream.wait_fd = -1;
361 }
362 break;
363 case LTTNG_UST_METADATA:
364 case LTTNG_UST_CHANNEL:
365 if (shm_fd >= 0) {
366 ret = close(shm_fd);
367 if (ret) {
368 PERROR("Error closing channel shm_fd");
369 }
370 *args.channel.shm_fd = -1;
371 }
372 if (wait_fd >= 0) {
373 ret = close(wait_fd);
374 if (ret) {
375 PERROR("Error closing channel wait_fd");
376 }
377 *args.channel.wait_fd = -1;
378 }
379 break;
380 }
381 }
382
381c0f1e 383error:
17dfb34b 384 ust_unlock();
1ea11eab 385 return ret;
d9e99d10
MD
386}
387
46050b1a
MD
388static
389void cleanup_sock_info(struct sock_info *sock_info)
390{
391 int ret;
392
393 if (sock_info->socket != -1) {
394 ret = close(sock_info->socket);
395 if (ret) {
7fc90dca 396 ERR("Error closing apps socket");
46050b1a
MD
397 }
398 sock_info->socket = -1;
399 }
400 if (sock_info->root_handle != -1) {
d4419b81 401 ret = lttng_ust_objd_unref(sock_info->root_handle);
46050b1a
MD
402 if (ret) {
403 ERR("Error unref root handle");
404 }
405 sock_info->root_handle = -1;
406 }
318dfea9 407 sock_info->constructor_sem_posted = 0;
7fc90dca
MD
408 if (sock_info->wait_shm_mmap) {
409 ret = munmap(sock_info->wait_shm_mmap, sysconf(_SC_PAGE_SIZE));
410 if (ret) {
411 ERR("Error unmapping wait shm");
412 }
413 sock_info->wait_shm_mmap = NULL;
414 }
415}
416
58d4b2a2 417/*
33bbeb90
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418 * Using fork to set umask in the child process (not multi-thread safe).
419 * We deal with the shm_open vs ftruncate race (happening when the
420 * sessiond owns the shm and does not let everybody modify it, to ensure
421 * safety against shm_unlink) by simply letting the mmap fail and
422 * retrying after a few seconds.
423 * For global shm, everybody has rw access to it until the sessiond
424 * starts.
58d4b2a2 425 */
7fc90dca 426static
58d4b2a2 427int get_wait_shm(struct sock_info *sock_info, size_t mmap_size)
7fc90dca 428{
7fc90dca 429 int wait_shm_fd, ret;
58d4b2a2 430 pid_t pid;
44e073f5 431
58d4b2a2 432 /*
33bbeb90 433 * Try to open read-only.
58d4b2a2 434 */
33bbeb90 435 wait_shm_fd = shm_open(sock_info->wait_shm_path, O_RDONLY, 0);
58d4b2a2
MD
436 if (wait_shm_fd >= 0) {
437 goto end;
438 } else if (wait_shm_fd < 0 && errno != ENOENT) {
439 /*
33bbeb90
MD
440 * Real-only open did not work, and it's not because the
441 * entry was not present. It's a failure that prohibits
442 * using shm.
58d4b2a2 443 */
7fc90dca 444 ERR("Error opening shm %s", sock_info->wait_shm_path);
58d4b2a2 445 goto end;
7fc90dca
MD
446 }
447 /*
58d4b2a2
MD
448 * If the open failed because the file did not exist, try
449 * creating it ourself.
7fc90dca 450 */
58d4b2a2
MD
451 pid = fork();
452 if (pid > 0) {
453 int status;
454
455 /*
456 * Parent: wait for child to return, in which case the
457 * shared memory map will have been created.
458 */
459 pid = wait(&status);
b7d3cb32 460 if (pid < 0 || !WIFEXITED(status) || WEXITSTATUS(status) != 0) {
58d4b2a2
MD
461 wait_shm_fd = -1;
462 goto end;
7fc90dca 463 }
58d4b2a2
MD
464 /*
465 * Try to open read-only again after creation.
466 */
33bbeb90 467 wait_shm_fd = shm_open(sock_info->wait_shm_path, O_RDONLY, 0);
58d4b2a2
MD
468 if (wait_shm_fd < 0) {
469 /*
470 * Real-only open did not work. It's a failure
471 * that prohibits using shm.
472 */
473 ERR("Error opening shm %s", sock_info->wait_shm_path);
474 goto end;
475 }
476 goto end;
477 } else if (pid == 0) {
478 int create_mode;
479
480 /* Child */
33bbeb90 481 create_mode = S_IRUSR | S_IWUSR | S_IRGRP;
58d4b2a2 482 if (sock_info->global)
33bbeb90 483 create_mode |= S_IROTH | S_IWGRP | S_IWOTH;
58d4b2a2
MD
484 /*
485 * We're alone in a child process, so we can modify the
486 * process-wide umask.
487 */
33bbeb90 488 umask(~create_mode);
58d4b2a2 489 /*
33bbeb90
MD
490 * Try creating shm (or get rw access).
491 * We don't do an exclusive open, because we allow other
492 * processes to create+ftruncate it concurrently.
58d4b2a2
MD
493 */
494 wait_shm_fd = shm_open(sock_info->wait_shm_path,
495 O_RDWR | O_CREAT, create_mode);
496 if (wait_shm_fd >= 0) {
497 ret = ftruncate(wait_shm_fd, mmap_size);
498 if (ret) {
499 PERROR("ftruncate");
500 exit(EXIT_FAILURE);
501 }
58d4b2a2
MD
502 exit(EXIT_SUCCESS);
503 }
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504 /*
505 * For local shm, we need to have rw access to accept
506 * opening it: this means the local sessiond will be
507 * able to wake us up. For global shm, we open it even
508 * if rw access is not granted, because the root.root
509 * sessiond will be able to override all rights and wake
510 * us up.
511 */
512 if (!sock_info->global && errno != EACCES) {
58d4b2a2
MD
513 ERR("Error opening shm %s", sock_info->wait_shm_path);
514 exit(EXIT_FAILURE);
515 }
516 /*
33bbeb90
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517 * The shm exists, but we cannot open it RW. Report
518 * success.
58d4b2a2
MD
519 */
520 exit(EXIT_SUCCESS);
521 } else {
522 return -1;
7fc90dca 523 }
58d4b2a2 524end:
33bbeb90
MD
525 if (wait_shm_fd >= 0 && !sock_info->global) {
526 struct stat statbuf;
527
528 /*
529 * Ensure that our user is the owner of the shm file for
530 * local shm. If we do not own the file, it means our
531 * sessiond will not have access to wake us up (there is
532 * probably a rogue process trying to fake our
533 * sessiond). Fallback to polling method in this case.
534 */
535 ret = fstat(wait_shm_fd, &statbuf);
536 if (ret) {
537 PERROR("fstat");
538 goto error_close;
539 }
540 if (statbuf.st_uid != getuid())
541 goto error_close;
542 }
58d4b2a2 543 return wait_shm_fd;
33bbeb90
MD
544
545error_close:
546 ret = close(wait_shm_fd);
547 if (ret) {
548 PERROR("Error closing fd");
549 }
550 return -1;
58d4b2a2
MD
551}
552
553static
554char *get_map_shm(struct sock_info *sock_info)
555{
556 size_t mmap_size = sysconf(_SC_PAGE_SIZE);
557 int wait_shm_fd, ret;
558 char *wait_shm_mmap;
559
560 wait_shm_fd = get_wait_shm(sock_info, mmap_size);
561 if (wait_shm_fd < 0) {
562 goto error;
44e073f5 563 }
7fc90dca
MD
564 wait_shm_mmap = mmap(NULL, mmap_size, PROT_READ,
565 MAP_SHARED, wait_shm_fd, 0);
7fc90dca
MD
566 /* close shm fd immediately after taking the mmap reference */
567 ret = close(wait_shm_fd);
568 if (ret) {
33bbeb90
MD
569 PERROR("Error closing fd");
570 }
571 if (wait_shm_mmap == MAP_FAILED) {
572 DBG("mmap error (can be caused by race with sessiond). Fallback to poll mode.");
573 goto error;
7fc90dca
MD
574 }
575 return wait_shm_mmap;
576
577error:
578 return NULL;
579}
580
581static
582void wait_for_sessiond(struct sock_info *sock_info)
583{
80e2814b
MD
584 int ret;
585
7fc90dca
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586 ust_lock();
587 if (lttng_ust_comm_should_quit) {
588 goto quit;
589 }
37ed587a
MD
590 if (wait_poll_fallback) {
591 goto error;
592 }
7fc90dca
MD
593 if (!sock_info->wait_shm_mmap) {
594 sock_info->wait_shm_mmap = get_map_shm(sock_info);
595 if (!sock_info->wait_shm_mmap)
596 goto error;
597 }
598 ust_unlock();
599
600 DBG("Waiting for %s apps sessiond", sock_info->name);
80e2814b
MD
601 /* Wait for futex wakeup */
602 if (uatomic_read((int32_t *) sock_info->wait_shm_mmap) == 0) {
603 ret = futex_async((int32_t *) sock_info->wait_shm_mmap,
604 FUTEX_WAIT, 0, NULL, NULL, 0);
80e2814b 605 if (ret < 0) {
37ed587a
MD
606 if (errno == EFAULT) {
607 wait_poll_fallback = 1;
a8b870ad 608 DBG(
37ed587a
MD
609"Linux kernels 2.6.33 to 3.0 (with the exception of stable versions) "
610"do not support FUTEX_WAKE on read-only memory mappings correctly. "
611"Please upgrade your kernel "
612"(fix is commit 9ea71503a8ed9184d2d0b8ccc4d269d05f7940ae in Linux kernel "
613"mainline). LTTng-UST will use polling mode fallback.");
cd27263b
MD
614 if (ust_debug())
615 PERROR("futex");
37ed587a 616 }
80e2814b
MD
617 }
618 }
7fc90dca
MD
619 return;
620
621quit:
622 ust_unlock();
623 return;
624
625error:
626 ust_unlock();
7fc90dca 627 return;
46050b1a
MD
628}
629
1ea11eab
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630/*
631 * This thread does not allocate any resource, except within
632 * handle_message, within mutex protection. This mutex protects against
633 * fork and exit.
634 * The other moment it allocates resources is at socket connexion, which
635 * is also protected by the mutex.
636 */
d9e99d10
MD
637static
638void *ust_listener_thread(void *arg)
639{
1ea11eab 640 struct sock_info *sock_info = arg;
c0eedf81 641 int sock, ret, prev_connect_failed = 0, has_waited = 0;
d9e99d10 642
9eb62b9c
MD
643 /* Restart trying to connect to the session daemon */
644restart:
c0eedf81
MD
645 if (prev_connect_failed) {
646 /* Wait for sessiond availability with pipe */
647 wait_for_sessiond(sock_info);
648 if (has_waited) {
649 has_waited = 0;
650 /*
651 * Sleep for 5 seconds before retrying after a
652 * sequence of failure / wait / failure. This
653 * deals with a killed or broken session daemon.
654 */
655 sleep(5);
656 }
657 has_waited = 1;
658 prev_connect_failed = 0;
659 }
17dfb34b 660 ust_lock();
1ea11eab
MD
661
662 if (lttng_ust_comm_should_quit) {
17dfb34b 663 ust_unlock();
1ea11eab
MD
664 goto quit;
665 }
9eb62b9c 666
1ea11eab
MD
667 if (sock_info->socket != -1) {
668 ret = close(sock_info->socket);
669 if (ret) {
11ff9c7d 670 ERR("Error closing %s apps socket", sock_info->name);
1ea11eab
MD
671 }
672 sock_info->socket = -1;
673 }
46050b1a 674
9eb62b9c 675 /* Register */
57773204 676 ret = ustcomm_connect_unix_sock(sock_info->sock_path);
9eb62b9c 677 if (ret < 0) {
4d3c9523 678 DBG("Info: sessiond not accepting connections to %s apps socket", sock_info->name);
c0eedf81 679 prev_connect_failed = 1;
11ff9c7d
MD
680 /*
681 * If we cannot find the sessiond daemon, don't delay
682 * constructor execution.
683 */
edaa1431 684 ret = handle_register_done(sock_info);
11ff9c7d 685 assert(!ret);
17dfb34b 686 ust_unlock();
1ea11eab 687 goto restart;
46050b1a
MD
688 }
689
690 sock_info->socket = sock = ret;
691
692 /*
693 * Create only one root handle per listener thread for the whole
694 * process lifetime.
695 */
696 if (sock_info->root_handle == -1) {
697 ret = lttng_abi_create_root_handle();
a51070bb 698 if (ret < 0) {
46050b1a 699 ERR("Error creating root handle");
17dfb34b 700 ust_unlock();
46050b1a
MD
701 goto quit;
702 }
703 sock_info->root_handle = ret;
9eb62b9c 704 }
1ea11eab 705
9eb62b9c
MD
706 ret = register_app_to_sessiond(sock);
707 if (ret < 0) {
11ff9c7d 708 ERR("Error registering to %s apps socket", sock_info->name);
c0eedf81 709 prev_connect_failed = 1;
11ff9c7d
MD
710 /*
711 * If we cannot register to the sessiond daemon, don't
712 * delay constructor execution.
713 */
edaa1431 714 ret = handle_register_done(sock_info);
11ff9c7d 715 assert(!ret);
17dfb34b 716 ust_unlock();
9eb62b9c
MD
717 goto restart;
718 }
17dfb34b 719 ust_unlock();
46050b1a 720
d9e99d10
MD
721 for (;;) {
722 ssize_t len;
57773204 723 struct ustcomm_ust_msg lum;
d9e99d10 724
57773204 725 len = ustcomm_recv_unix_sock(sock, &lum, sizeof(lum));
d9e99d10
MD
726 switch (len) {
727 case 0: /* orderly shutdown */
11ff9c7d 728 DBG("%s ltt-sessiond has performed an orderly shutdown\n", sock_info->name);
8236ba10
MD
729 ust_lock();
730 /*
731 * Either sessiond has shutdown or refused us by closing the socket.
732 * In either case, we don't want to delay construction execution,
733 * and we need to wait before retry.
734 */
735 prev_connect_failed = 1;
736 /*
737 * If we cannot register to the sessiond daemon, don't
738 * delay constructor execution.
739 */
740 ret = handle_register_done(sock_info);
741 assert(!ret);
742 ust_unlock();
d9e99d10 743 goto end;
e7723462 744 case sizeof(lum):
d9e99d10 745 DBG("message received\n");
11ff9c7d 746 ret = handle_message(sock_info, sock, &lum);
2a80c9d8 747 if (ret < 0) {
11ff9c7d 748 ERR("Error handling message for %s socket", sock_info->name);
d9e99d10
MD
749 }
750 continue;
751 case -1:
8236ba10 752 DBG("Receive failed from lttng-sessiond with errno %d", errno);
d9e99d10 753 if (errno == ECONNRESET) {
11ff9c7d 754 ERR("%s remote end closed connection\n", sock_info->name);
d9e99d10
MD
755 goto end;
756 }
757 goto end;
758 default:
11ff9c7d 759 ERR("incorrect message size (%s socket): %zd\n", sock_info->name, len);
d9e99d10
MD
760 continue;
761 }
762
763 }
764end:
9eb62b9c 765 goto restart; /* try to reconnect */
1ea11eab 766quit:
d9e99d10
MD
767 return NULL;
768}
769
cf12a773
MD
770/*
771 * Return values: -1: don't wait. 0: wait forever. 1: timeout wait.
772 */
11ff9c7d
MD
773static
774int get_timeout(struct timespec *constructor_timeout)
775{
cf12a773
MD
776 long constructor_delay_ms = LTTNG_UST_DEFAULT_CONSTRUCTOR_TIMEOUT_MS;
777 char *str_delay;
11ff9c7d
MD
778 int ret;
779
69400ac4 780 str_delay = getenv("LTTNG_UST_REGISTER_TIMEOUT");
cf12a773
MD
781 if (str_delay) {
782 constructor_delay_ms = strtol(str_delay, NULL, 10);
783 }
784
785 switch (constructor_delay_ms) {
786 case -1:/* fall-through */
787 case 0:
788 return constructor_delay_ms;
789 default:
790 break;
791 }
792
793 /*
794 * If we are unable to find the current time, don't wait.
795 */
796 ret = clock_gettime(CLOCK_REALTIME, constructor_timeout);
797 if (ret) {
798 return -1;
799 }
95259bd0
MD
800 constructor_timeout->tv_sec += constructor_delay_ms / 1000UL;
801 constructor_timeout->tv_nsec +=
802 (constructor_delay_ms % 1000UL) * 1000000UL;
11ff9c7d
MD
803 if (constructor_timeout->tv_nsec >= 1000000000UL) {
804 constructor_timeout->tv_sec++;
805 constructor_timeout->tv_nsec -= 1000000000UL;
806 }
cf12a773 807 return 1;
11ff9c7d 808}
d9e99d10 809
2691221a
MD
810/*
811 * sessiond monitoring thread: monitor presence of global and per-user
812 * sessiond by polling the application common named pipe.
813 */
814/* TODO */
815
edaa1431 816void __attribute__((constructor)) lttng_ust_init(void)
2691221a 817{
11ff9c7d 818 struct timespec constructor_timeout;
cf12a773 819 int timeout_mode;
2691221a
MD
820 int ret;
821
edaa1431
MD
822 if (uatomic_xchg(&initialized, 1) == 1)
823 return;
824
825 /*
826 * We want precise control over the order in which we construct
827 * our sub-libraries vs starting to receive commands from
828 * sessiond (otherwise leading to errors when trying to create
829 * sessiond before the init functions are completed).
830 */
2691221a 831 init_usterr();
edaa1431
MD
832 init_tracepoint();
833 ltt_ring_buffer_metadata_client_init();
834 ltt_ring_buffer_client_overwrite_init();
835 ltt_ring_buffer_client_discard_init();
2691221a 836
cf12a773 837 timeout_mode = get_timeout(&constructor_timeout);
11ff9c7d 838
95259bd0 839 ret = sem_init(&constructor_wait, 0, 0);
11ff9c7d
MD
840 assert(!ret);
841
8d20bf54 842 ret = setup_local_apps();
2691221a 843 if (ret) {
8d20bf54 844 ERR("Error setting up to local apps");
2691221a 845 }
1ea11eab
MD
846 ret = pthread_create(&local_apps.ust_listener, NULL,
847 ust_listener_thread, &local_apps);
11ff9c7d 848
8d20bf54
MD
849 if (local_apps.allowed) {
850 ret = pthread_create(&global_apps.ust_listener, NULL,
851 ust_listener_thread, &global_apps);
852 } else {
853 handle_register_done(&local_apps);
854 }
855
cf12a773
MD
856 switch (timeout_mode) {
857 case 1: /* timeout wait */
95259bd0
MD
858 do {
859 ret = sem_timedwait(&constructor_wait,
860 &constructor_timeout);
861 } while (ret < 0 && errno == EINTR);
cf12a773
MD
862 if (ret < 0 && errno == ETIMEDOUT) {
863 ERR("Timed out waiting for ltt-sessiond");
864 } else {
865 assert(!ret);
866 }
867 break;
7b766b16 868 case -1:/* wait forever */
95259bd0
MD
869 do {
870 ret = sem_wait(&constructor_wait);
871 } while (ret < 0 && errno == EINTR);
11ff9c7d 872 assert(!ret);
cf12a773 873 break;
7b766b16 874 case 0: /* no timeout */
cf12a773 875 break;
11ff9c7d 876 }
2691221a
MD
877}
878
17dfb34b
MD
879static
880void lttng_ust_cleanup(int exiting)
881{
882 cleanup_sock_info(&global_apps);
883 if (local_apps.allowed) {
884 cleanup_sock_info(&local_apps);
885 }
886 lttng_ust_abi_exit();
003fedf4 887 lttng_ust_events_exit();
17dfb34b
MD
888 ltt_ring_buffer_client_discard_exit();
889 ltt_ring_buffer_client_overwrite_exit();
890 ltt_ring_buffer_metadata_client_exit();
891 exit_tracepoint();
892 if (!exiting) {
893 /* Reinitialize values for fork */
894 sem_count = 2;
895 lttng_ust_comm_should_quit = 0;
896 initialized = 0;
897 }
898}
899
edaa1431 900void __attribute__((destructor)) lttng_ust_exit(void)
2691221a
MD
901{
902 int ret;
903
9eb62b9c
MD
904 /*
905 * Using pthread_cancel here because:
906 * A) we don't want to hang application teardown.
907 * B) the thread is not allocating any resource.
908 */
1ea11eab
MD
909
910 /*
911 * Require the communication thread to quit. Synchronize with
912 * mutexes to ensure it is not in a mutex critical section when
913 * pthread_cancel is later called.
914 */
17dfb34b 915 ust_lock();
1ea11eab 916 lttng_ust_comm_should_quit = 1;
17dfb34b 917 ust_unlock();
1ea11eab 918
1ea11eab 919 ret = pthread_cancel(global_apps.ust_listener);
9eb62b9c
MD
920 if (ret) {
921 ERR("Error cancelling global ust listener thread");
2691221a 922 }
8d20bf54
MD
923 if (local_apps.allowed) {
924 ret = pthread_cancel(local_apps.ust_listener);
925 if (ret) {
926 ERR("Error cancelling local ust listener thread");
927 }
8d20bf54 928 }
17dfb34b 929 lttng_ust_cleanup(1);
2691221a 930}
e822f505
MD
931
932/*
933 * We exclude the worker threads across fork and clone (except
934 * CLONE_VM), because these system calls only keep the forking thread
935 * running in the child. Therefore, we don't want to call fork or clone
936 * in the middle of an tracepoint or ust tracing state modification.
937 * Holding this mutex protects these structures across fork and clone.
938 */
b728d87e 939void ust_before_fork(sigset_t *save_sigset)
e822f505
MD
940{
941 /*
942 * Disable signals. This is to avoid that the child intervenes
943 * before it is properly setup for tracing. It is safer to
944 * disable all signals, because then we know we are not breaking
945 * anything by restoring the original mask.
946 */
947 sigset_t all_sigs;
948 int ret;
949
950 /* Disable signals */
951 sigfillset(&all_sigs);
b728d87e 952 ret = sigprocmask(SIG_BLOCK, &all_sigs, save_sigset);
e822f505
MD
953 if (ret == -1) {
954 PERROR("sigprocmask");
955 }
17dfb34b 956 ust_lock();
e822f505
MD
957 rcu_bp_before_fork();
958}
959
b728d87e 960static void ust_after_fork_common(sigset_t *restore_sigset)
e822f505
MD
961{
962 int ret;
963
17dfb34b
MD
964 DBG("process %d", getpid());
965 ust_unlock();
e822f505 966 /* Restore signals */
23c8854a 967 ret = sigprocmask(SIG_SETMASK, restore_sigset, NULL);
e822f505
MD
968 if (ret == -1) {
969 PERROR("sigprocmask");
970 }
971}
972
b728d87e 973void ust_after_fork_parent(sigset_t *restore_sigset)
e822f505 974{
17dfb34b 975 DBG("process %d", getpid());
e822f505
MD
976 rcu_bp_after_fork_parent();
977 /* Release mutexes and reenable signals */
b728d87e 978 ust_after_fork_common(restore_sigset);
e822f505
MD
979}
980
17dfb34b
MD
981/*
982 * After fork, in the child, we need to cleanup all the leftover state,
983 * except the worker thread which already magically disappeared thanks
984 * to the weird Linux fork semantics. After tyding up, we call
985 * lttng_ust_init() again to start over as a new PID.
986 *
987 * This is meant for forks() that have tracing in the child between the
988 * fork and following exec call (if there is any).
989 */
b728d87e 990void ust_after_fork_child(sigset_t *restore_sigset)
e822f505 991{
17dfb34b 992 DBG("process %d", getpid());
e822f505
MD
993 /* Release urcu mutexes */
994 rcu_bp_after_fork_child();
17dfb34b 995 lttng_ust_cleanup(0);
a93bfc45 996 lttng_context_vtid_reset();
e822f505 997 /* Release mutexes and reenable signals */
b728d87e 998 ust_after_fork_common(restore_sigset);
318dfea9 999 lttng_ust_init();
e822f505 1000}
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