ust: make lttd work
[ust.git] / libustcomm / ustcomm.c
CommitLineData
d0b5f2b9 1#define _GNU_SOURCE
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2#include <sys/types.h>
3#include <signal.h>
4#include <errno.h>
5#include <sys/socket.h>
6#include <sys/un.h>
d0b5f2b9 7#include <unistd.h>
aca1ad90 8#include <poll.h>
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9
10#include <stdio.h>
11#include <stdlib.h>
d0b5f2b9 12#include <string.h>
b0540e11 13#include <execinfo.h>
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14
15#include "ustcomm.h"
16#include "localerr.h"
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17
18#define UNIX_PATH_MAX 108
19#define SOCK_DIR "/tmp/socks"
20#define UST_SIGNAL SIGIO
21
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22#define MSG_MAX 1000
23
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24/* FIXME: ustcomm blocks on message sending, which might be problematic in
25 * some cases. Fix the poll() usage so sends are buffered until they don't
26 * block.
27 */
28
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29//static void bt(void)
30//{
31// void *buffer[100];
32// int result;
33//
34// result = backtrace(&buffer, 100);
35// backtrace_symbols_fd(buffer, result, STDERR_FILENO);
36//}
b0540e11 37
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38char *strdup_malloc(const char *s)
39{
40 char *retval;
41
42 if(s == NULL)
43 return NULL;
44
45 retval = (char *) malloc(strlen(s)+1);
46
47 strcpy(retval, s);
48
49 return retval;
50}
51
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52static void signal_process(pid_t pid)
53{
54 int result;
55
56 result = kill(pid, UST_SIGNAL);
57 if(result == -1) {
b0540e11 58 PERROR("kill");
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59 return;
60 }
61
62 sleep(1);
63}
64
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65int send_message_fd(int fd, const char *msg, char **reply)
66{
67 int result;
68
69 result = send(fd, msg, strlen(msg), 0);
70 if(result == -1) {
71 PERROR("send");
72 return -1;
73 }
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74 else if(result == 0) {
75 return 0;
76 }
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77
78 if(!reply)
688760ef 79 return 1;
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80
81 *reply = (char *) malloc(MSG_MAX+1);
82 result = recv(fd, *reply, MSG_MAX, 0);
83 if(result == -1) {
84 PERROR("recv");
85 return -1;
86 }
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87 else if(result == 0) {
88 return 0;
89 }
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90
91 (*reply)[result] = '\0';
92
688760ef 93 return 1;
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94}
95
b0540e11 96int send_message_path(const char *path, const char *msg, char **reply, int signalpid)
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97{
98 int fd;
99 int result;
100 struct sockaddr_un addr;
f9e5ce61 101
aca1ad90 102 result = fd = socket(PF_UNIX, SOCK_STREAM, 0);
f9e5ce61 103 if(result == -1) {
b0540e11 104 PERROR("socket");
d0b5f2b9 105 return -1;
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106 }
107
108 addr.sun_family = AF_UNIX;
109
b0540e11 110 result = snprintf(addr.sun_path, UNIX_PATH_MAX, "%s", path);
f9e5ce61 111 if(result >= UNIX_PATH_MAX) {
b0540e11 112 ERR("string overflow allocating socket name");
d0b5f2b9 113 return -1;
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114 }
115
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116 if(signalpid >= 0)
117 signal_process(signalpid);
f9e5ce61 118
aca1ad90 119 result = connect(fd, (struct sockaddr *)&addr, sizeof(addr));
f9e5ce61 120 if(result == -1) {
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121 PERROR("connect");
122 return -1;
123 }
124
811e4b93 125 return send_message_fd(fd, msg, reply);
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126}
127
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128/* pid: the pid of the trace process that must receive the msg
129 msg: pointer to a null-terminated message to send
130 reply: location where to put the null-terminated string of the reply;
131 it must be free'd after usage
132 */
133
134int send_message(pid_t pid, const char *msg, char **reply)
135{
136 int result;
137 char path[UNIX_PATH_MAX];
138
139 result = snprintf(path, UNIX_PATH_MAX, "%s/%d", SOCK_DIR, pid);
140 if(result >= UNIX_PATH_MAX) {
141 fprintf(stderr, "string overflow allocating socket name");
142 return -1;
143 }
144
145 send_message_path(path, msg, reply, pid);
146
147 return 0;
148}
149
150/* Called by an app to ask the consumer daemon to connect to it. */
151
152int ustcomm_request_consumer(pid_t pid, const char *channel)
153{
154 char path[UNIX_PATH_MAX];
155 int result;
156 char *msg;
157
158 result = snprintf(path, UNIX_PATH_MAX, "%s/ustd", SOCK_DIR);
159 if(result >= UNIX_PATH_MAX) {
160 fprintf(stderr, "string overflow allocating socket name");
161 return -1;
162 }
163
164 asprintf(&msg, "collect %d %s", pid, channel);
165
3847c3ba 166 send_message_path(path, msg, NULL, -1);
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167 free(msg);
168
169 return 0;
170}
171
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172/* returns 1 to indicate a message was received
173 * returns 0 to indicate no message was received (cannot happen)
174 * returns -1 to indicate an error
175 */
811e4b93 176
b02e31e5 177static int recv_message_fd(int fd, char **msg, struct ustcomm_source *src)
d0b5f2b9 178{
d0b5f2b9 179 int result;
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180
181 *msg = (char *) malloc(MSG_MAX+1);
b02e31e5 182
aca1ad90 183 result = recv(fd, *msg, MSG_MAX, 0);
d0b5f2b9 184 if(result == -1) {
688760ef 185 PERROR("recv");
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186 return -1;
187 }
b0540e11 188
d0b5f2b9 189 (*msg)[result] = '\0';
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190
191 DBG("ustcomm_app_recv_message: result is %d, message is %s", result, (*msg));
192
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193 if(src)
194 src->fd = fd;
195
688760ef 196 return 1;
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197}
198
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199int ustcomm_send_reply(struct ustcomm_server *server, char *msg, struct ustcomm_source *src)
200{
201 int result;
202
203 result = send_message_fd(src->fd, msg, NULL);
3a7b90de 204 if(result < 0) {
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205 ERR("error in send_message_fd");
206 return -1;
207 }
208
209 return 0;
210}
211
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212/* @timeout: max blocking time in milliseconds, -1 means infinity
213 *
214 * returns 1 to indicate a message was received
215 * returns 0 to indicate no message was received
216 * returns -1 to indicate an error
217 */
218
219int ustcomm_recv_message(struct ustcomm_server *server, char **msg, struct ustcomm_source *src, int timeout)
b0540e11 220{
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221 struct pollfd *fds;
222 struct ustcomm_connection *conn;
223 int result;
224 int retval;
225
226 for(;;) {
227 int idx = 0;
228 int n_fds = 1;
229
811e4b93 230 list_for_each_entry(conn, &server->connections, list) {
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231 n_fds++;
232 }
233
234 fds = (struct pollfd *) malloc(n_fds * sizeof(struct pollfd));
235 if(fds == NULL) {
236 ERR("malloc returned NULL");
237 return -1;
238 }
239
240 /* special idx 0 is for listening socket */
811e4b93 241 fds[idx].fd = server->listen_fd;
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242 fds[idx].events = POLLIN;
243 idx++;
244
811e4b93 245 list_for_each_entry(conn, &server->connections, list) {
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246 fds[idx].fd = conn->fd;
247 fds[idx].events = POLLIN;
248 idx++;
249 }
250
688760ef 251 result = poll(fds, n_fds, timeout);
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252 if(result == -1) {
253 PERROR("poll");
254 return -1;
255 }
256
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257 if(result == 0)
258 return 0;
259
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260 if(fds[0].revents) {
261 struct ustcomm_connection *newconn;
262 int newfd;
263
811e4b93 264 result = newfd = accept(server->listen_fd, NULL, NULL);
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265 if(result == -1) {
266 PERROR("accept");
267 return -1;
268 }
269
270 newconn = (struct ustcomm_connection *) malloc(sizeof(struct ustcomm_connection));
271 if(newconn == NULL) {
272 ERR("malloc returned NULL");
273 return -1;
274 }
275
276 newconn->fd = newfd;
277
811e4b93 278 list_add(&newconn->list, &server->connections);
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279 }
280
281 for(idx=1; idx<n_fds; idx++) {
282 if(fds[idx].revents) {
283 retval = recv_message_fd(fds[idx].fd, msg, src);
284 if(**msg == 0) {
285 /* connection finished */
286 close(fds[idx].fd);
287
811e4b93 288 list_for_each_entry(conn, &server->connections, list) {
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289 if(conn->fd == fds[idx].fd) {
290 list_del(&conn->list);
291 break;
292 }
293 }
294 }
295 else {
296 goto free_fds_return;
297 }
298 }
299 }
300
301 free(fds);
302 }
303
304free_fds_return:
305 free(fds);
306 return retval;
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307}
308
688760ef 309int ustcomm_ustd_recv_message(struct ustcomm_ustd *ustd, char **msg, struct ustcomm_source *src, int timeout)
811e4b93 310{
688760ef 311 return ustcomm_recv_message(&ustd->server, msg, src, timeout);
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312}
313
688760ef 314int ustcomm_app_recv_message(struct ustcomm_app *app, char **msg, struct ustcomm_source *src, int timeout)
b0540e11 315{
688760ef 316 return ustcomm_recv_message(&app->server, msg, src, timeout);
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317}
318
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319/* This removes src from the list of active connections of app.
320 */
321
322int ustcomm_app_detach_client(struct ustcomm_app *app, struct ustcomm_source *src)
323{
324 struct ustcomm_server *server = (struct ustcomm_server *)app;
325 struct ustcomm_connection *conn;
326
327 list_for_each_entry(conn, &server->connections, list) {
328 if(conn->fd == src->fd) {
329 list_del(&conn->list);
330 goto found;
331 }
332 }
333
334 return -1;
335found:
336 return src->fd;
337}
338
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339static int init_named_socket(char *name, char **path_out)
340{
341 int result;
342 int fd;
343
344 struct sockaddr_un addr;
345
aca1ad90 346 result = fd = socket(PF_UNIX, SOCK_STREAM, 0);
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347 if(result == -1) {
348 PERROR("socket");
349 return -1;
350 }
351
352 addr.sun_family = AF_UNIX;
353
354 strncpy(addr.sun_path, name, UNIX_PATH_MAX);
355 addr.sun_path[UNIX_PATH_MAX-1] = '\0';
356
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357 result = access(name, F_OK);
358 if(result == 0) {
359 /* file exists */
360 result = unlink(name);
361 if(result == -1) {
362 PERROR("unlink of socket file");
363 goto close_sock;
364 }
365 WARN("socket already exists; overwriting");
366 }
367
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368 result = bind(fd, (struct sockaddr *)&addr, sizeof(addr));
369 if(result == -1) {
370 PERROR("bind");
371 goto close_sock;
372 }
373
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374 result = listen(fd, 1);
375 if(result == -1) {
376 PERROR("listen");
377 goto close_sock;
378 }
379
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380 if(path_out) {
381 *path_out = "";
d0b5f2b9 382 *path_out = strdupa(addr.sun_path);
b0540e11 383 }
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384
385 return fd;
386
387 close_sock:
388 close(fd);
389
390 return -1;
391}
392
393int ustcomm_init_app(pid_t pid, struct ustcomm_app *handle)
394{
395 int result;
396 char *name;
397
398 result = asprintf(&name, "%s/%d", SOCK_DIR, (int)pid);
399 if(result >= UNIX_PATH_MAX) {
400 ERR("string overflow allocating socket name");
401 return -1;
402 }
403
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404 handle->server.listen_fd = init_named_socket(name, &(handle->server.socketpath));
405 if(handle->server.listen_fd < 0) {
aca1ad90 406 ERR("error initializing named socket");
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407 goto free_name;
408 }
409 free(name);
410
811e4b93 411 INIT_LIST_HEAD(&handle->server.connections);
aca1ad90 412
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413 return 0;
414
415free_name:
416 free(name);
417 return -1;
418}
419
420int ustcomm_init_ustd(struct ustcomm_ustd *handle)
421{
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422 int result;
423 char *name;
424
425 result = asprintf(&name, "%s/%s", SOCK_DIR, "ustd");
426 if(result >= UNIX_PATH_MAX) {
427 ERR("string overflow allocating socket name");
428 return -1;
429 }
430
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431 handle->server.listen_fd = init_named_socket(name, &handle->server.socketpath);
432 if(handle->server.listen_fd < 0) {
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433 ERR("error initializing named socket");
434 goto free_name;
435 }
3847c3ba 436 free(name);
d0b5f2b9 437
811e4b93 438 INIT_LIST_HEAD(&handle->server.connections);
aca1ad90 439
d0b5f2b9 440 return 0;
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441
442free_name:
443 free(name);
444 return -1;
d0b5f2b9 445}
b02e31e5 446
aca1ad90 447static char *find_tok(char *str)
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448{
449 while(*str == ' ') {
450 str++;
451
452 if(*str == 0)
453 return NULL;
454 }
455
456 return str;
457}
458
459static char *find_sep(char *str)
460{
461 while(*str != ' ') {
462 str++;
463
464 if(*str == 0)
465 break;
466 }
467
468 return str;
469}
470
471int nth_token_is(char *str, char *token, int tok_no)
472{
473 int i;
474 char *start;
475 char *end;
476
477 for(i=0; i<=tok_no; i++) {
478 str = find_tok(str);
479 if(str == NULL)
480 return -1;
481
482 start = str;
483
484 str = find_sep(str);
485 if(str == NULL)
486 return -1;
487
488 end = str;
489 }
490
491 if(end-start != strlen(token))
492 return 0;
493
494 if(strncmp(start, token, end-start))
495 return 0;
496
497 return 1;
498}
499
500char *nth_token(char *str, int tok_no)
501{
502 static char *retval = NULL;
503 int i;
504 char *start;
505 char *end;
506
507 for(i=0; i<=tok_no; i++) {
508 str = find_tok(str);
509 if(str == NULL)
510 return NULL;
511
512 start = str;
513
514 str = find_sep(str);
515 if(str == NULL)
516 return NULL;
517
518 end = str;
519 }
520
521 if(retval) {
522 free(retval);
523 retval = NULL;
524 }
525
aca1ad90 526 asprintf(&retval, "%.*s", (int)(end-start), start);
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527
528 return retval;
529}
530
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