]> jfr.im git - irc/rqf/shadowircd.git/blob - src/sslproc.c
Copied libratbox and related stuff from shadowircd upstream.
[irc/rqf/shadowircd.git] / src / sslproc.c
1 /*
2 * sslproc.c: An interface to ssld
3 * Copyright (C) 2007 Aaron Sethman <androsyn@ratbox.org>
4 * Copyright (C) 2007 ircd-ratbox development team
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301
19 * USA
20 *
21 * $Id$
22 */
23
24 #include <ratbox_lib.h>
25 #include "stdinc.h"
26
27
28 #include "s_conf.h"
29 #include "logger.h"
30 #include "listener.h"
31 #include "sslproc.h"
32 #include "s_serv.h"
33 #include "ircd.h"
34 #include "hash.h"
35 #include "client.h"
36 #include "send.h"
37 #include "packet.h"
38
39 #define ZIPSTATS_TIME 60
40
41 static void collect_zipstats(void *unused);
42 static void ssl_read_ctl(rb_fde_t * F, void *data);
43 static int ssld_count;
44
45 static char tmpbuf[READBUF_SIZE];
46 static char nul = '\0';
47
48 #define MAXPASSFD 4
49 #define READSIZE 1024
50 typedef struct _ssl_ctl_buf
51 {
52 rb_dlink_node node;
53 char *buf;
54 size_t buflen;
55 rb_fde_t *F[MAXPASSFD];
56 int nfds;
57 } ssl_ctl_buf_t;
58
59
60 struct _ssl_ctl
61 {
62 rb_dlink_node node;
63 int cli_count;
64 rb_fde_t *F;
65 rb_fde_t *P;
66 pid_t pid;
67 rb_dlink_list readq;
68 rb_dlink_list writeq;
69 uint8_t dead;
70 };
71
72 static void send_new_ssl_certs_one(ssl_ctl_t * ctl, const char *ssl_cert,
73 const char *ssl_private_key, const char *ssl_dh_params);
74 static void send_init_prng(ssl_ctl_t * ctl, prng_seed_t seedtype, const char *path);
75
76
77 static rb_dlink_list ssl_daemons;
78
79 static inline int32_t
80 buf_to_int32(char *buf)
81 {
82 int32_t x;
83 memcpy(&x, buf, sizeof(x));
84 return x;
85 }
86
87 static inline void
88 int32_to_buf(char *buf, int32_t x)
89 {
90 memcpy(buf, &x, sizeof(x));
91 return;
92 }
93
94
95 static inline uint16_t
96 buf_to_uint16(char *buf)
97 {
98 uint16_t x;
99 memcpy(&x, buf, sizeof(x));
100 return x;
101 }
102
103 static inline void
104 uint16_to_buf(char *buf, uint16_t x)
105 {
106 memcpy(buf, &x, sizeof(x));
107 return;
108 }
109
110
111 static ssl_ctl_t *
112 allocate_ssl_daemon(rb_fde_t * F, rb_fde_t * P, int pid)
113 {
114 ssl_ctl_t *ctl;
115
116 if(F == NULL || pid < 0)
117 return NULL;
118 ctl = rb_malloc(sizeof(ssl_ctl_t));
119 ctl->F = F;
120 ctl->P = P;
121 ctl->pid = pid;
122 ssld_count++;
123 rb_dlinkAdd(ctl, &ctl->node, &ssl_daemons);
124 return ctl;
125 }
126
127 static void
128 free_ssl_daemon(ssl_ctl_t * ctl)
129 {
130 rb_dlink_node *ptr;
131 ssl_ctl_buf_t *ctl_buf;
132 int x;
133 if(ctl->cli_count)
134 return;
135
136 RB_DLINK_FOREACH(ptr, ctl->readq.head)
137 {
138 ctl_buf = ptr->data;
139 for(x = 0; x < ctl_buf->nfds; x++)
140 rb_close(ctl_buf->F[x]);
141
142 rb_free(ctl_buf->buf);
143 rb_free(ctl_buf);
144 }
145
146 RB_DLINK_FOREACH(ptr, ctl->writeq.head)
147 {
148 ctl_buf = ptr->data;
149 for(x = 0; x < ctl_buf->nfds; x++)
150 rb_close(ctl_buf->F[x]);
151
152 rb_free(ctl_buf->buf);
153 rb_free(ctl_buf);
154 }
155 rb_close(ctl->F);
156 rb_close(ctl->P);
157 rb_dlinkDelete(&ctl->node, &ssl_daemons);
158 rb_free(ctl);
159 }
160
161 static char *ssld_path;
162
163 static int ssld_spin_count = 0;
164 static time_t last_spin;
165 static int ssld_wait = 0;
166
167
168 static void
169 ssl_killall(void)
170 {
171 rb_dlink_node *ptr, *next;
172 ssl_ctl_t *ctl;
173 RB_DLINK_FOREACH_SAFE(ptr, next, ssl_daemons.head)
174 {
175 ctl = ptr->data;
176 if(ctl->dead)
177 continue;
178 ctl->dead = 1;
179 ssld_count--;
180 rb_kill(ctl->pid, SIGKILL);
181 }
182 }
183
184 static void
185 ssl_dead(ssl_ctl_t * ctl)
186 {
187 if(ctl->dead)
188 return;
189
190 ctl->dead = 1;
191 ssld_count--;
192 rb_kill(ctl->pid, SIGKILL); /* make sure the process is really gone */
193 ilog(L_MAIN, "ssld helper died - attempting to restart");
194 sendto_realops_snomask(SNO_GENERAL, L_ALL, "ssld helper died - attempting to restart");
195 start_ssldaemon(1, ServerInfo.ssl_cert, ServerInfo.ssl_private_key, ServerInfo.ssl_dh_params);
196 }
197
198 static void
199 ssl_do_pipe(rb_fde_t * F, void *data)
200 {
201 int retlen;
202 ssl_ctl_t *ctl = data;
203 retlen = rb_write(F, "0", 1);
204 if(retlen == 0 || (retlen < 0 && !rb_ignore_errno(errno)))
205 {
206 ssl_dead(ctl);
207 return;
208 }
209 rb_setselect(F, RB_SELECT_READ, ssl_do_pipe, data);
210 }
211
212 static void
213 restart_ssld_event(void *unused)
214 {
215 ssld_spin_count = 0;
216 last_spin = 0;
217 ssld_wait = 0;
218 if(ServerInfo.ssld_count > get_ssld_count())
219 {
220 int start = ServerInfo.ssld_count - get_ssld_count();
221 ilog(L_MAIN, "Attempting to restart ssld processes");
222 sendto_realops_snomask(SNO_GENERAL, L_ALL, "Attempt to restart ssld processes");
223 start_ssldaemon(start, ServerInfo.ssl_cert, ServerInfo.ssl_private_key, ServerInfo.ssl_dh_params);
224 }
225 }
226
227 int
228 start_ssldaemon(int count, const char *ssl_cert, const char *ssl_private_key, const char *ssl_dh_params)
229 {
230 rb_fde_t *F1, *F2;
231 rb_fde_t *P1, *P2;
232 #ifdef _WIN32
233 const char *suffix = ".exe";
234 #else
235 const char *suffix = "";
236 #endif
237
238 char fullpath[PATH_MAX + 1];
239 char fdarg[6];
240 const char *parv[2];
241 char buf[128];
242 char s_pid[10];
243 pid_t pid;
244 int started = 0, i;
245
246 if(ssld_wait)
247 return 0;
248
249 if(ssld_spin_count > 20 && (rb_current_time() - last_spin < 5))
250 {
251 ilog(L_MAIN, "ssld helper is spinning - will attempt to restart in 1 minute");
252 sendto_realops_snomask(SNO_GENERAL, L_ALL,
253 "ssld helper is spinning - will attempt to restart in 1 minute");
254 rb_event_add("restart_ssld_event", restart_ssld_event, NULL, 60);
255 ssld_wait = 1;
256 return 0;
257 }
258
259 ssld_spin_count++;
260 last_spin = rb_current_time();
261
262 if(ssld_path == NULL)
263 {
264 rb_snprintf(fullpath, sizeof(fullpath), "%s/ssld%s", BINPATH, suffix);
265
266 if(access(fullpath, X_OK) == -1)
267 {
268 rb_snprintf(fullpath, sizeof(fullpath), "%s/bin/ssld%s",
269 ConfigFileEntry.dpath, suffix);
270 if(access(fullpath, X_OK) == -1)
271 {
272 ilog(L_MAIN,
273 "Unable to execute ssld%s in %s/bin or %s",
274 ConfigFileEntry.dpath, suffix, BINPATH);
275 return 0;
276 }
277 }
278 ssld_path = rb_strdup(fullpath);
279 }
280 rb_strlcpy(buf, "-ircd ssld daemon helper", sizeof(buf));
281 parv[0] = buf;
282 parv[1] = NULL;
283
284 for(i = 0; i < count; i++)
285 {
286 ssl_ctl_t *ctl;
287 rb_socketpair(AF_UNIX, SOCK_DGRAM, 0, &F1, &F2, "SSL/TLS handle passing socket");
288 rb_set_buffers(F1, READBUF_SIZE);
289 rb_set_buffers(F2, READBUF_SIZE);
290 rb_snprintf(fdarg, sizeof(fdarg), "%d", rb_get_fd(F2));
291 rb_setenv("CTL_FD", fdarg, 1);
292 rb_pipe(&P1, &P2, "SSL/TLS pipe");
293 rb_snprintf(fdarg, sizeof(fdarg), "%d", rb_get_fd(P1));
294 rb_setenv("CTL_PIPE", fdarg, 1);
295 rb_snprintf(s_pid, sizeof(s_pid), "%d", getpid());
296 rb_setenv("CTL_PPID", s_pid, 1);
297 #ifdef _WIN32
298 SetHandleInformation((HANDLE) rb_get_fd(F2), HANDLE_FLAG_INHERIT, 1);
299 SetHandleInformation((HANDLE) rb_get_fd(P1), HANDLE_FLAG_INHERIT, 1);
300 #endif
301
302 pid = rb_spawn_process(ssld_path, (const char **) parv);
303 if(pid == -1)
304 {
305 ilog(L_MAIN, "Unable to create ssld: %s\n", strerror(errno));
306 rb_close(F1);
307 rb_close(F2);
308 rb_close(P1);
309 rb_close(P2);
310 return started;
311 }
312 started++;
313 rb_close(F2);
314 rb_close(P1);
315 ctl = allocate_ssl_daemon(F1, P2, pid);
316 if(ssl_ok)
317 {
318 if(ConfigFileEntry.use_egd && (ConfigFileEntry.egdpool_path != NULL))
319 send_init_prng(ctl, RB_PRNG_EGD, ConfigFileEntry.egdpool_path);
320 else
321 send_init_prng(ctl, RB_PRNG_DEFAULT, NULL);
322 }
323 if(ssl_ok && ssl_cert != NULL && ssl_private_key != NULL)
324 send_new_ssl_certs_one(ctl, ssl_cert, ssl_private_key,
325 ssl_dh_params != NULL ? ssl_dh_params : "");
326 ssl_read_ctl(ctl->F, ctl);
327 ssl_do_pipe(P2, ctl);
328
329 }
330 return started;
331 }
332
333 static void
334 ssl_process_zipstats(ssl_ctl_t * ctl, ssl_ctl_buf_t * ctl_buf)
335 {
336 struct Client *server;
337 struct ZipStats *zips;
338 int parc;
339 char *parv[6];
340 parc = rb_string_to_array(ctl_buf->buf, parv, 6);
341 server = find_server(NULL, parv[1]);
342 if(server == NULL || server->localClient == NULL || !IsCapable(server, CAP_ZIP))
343 return;
344 if(server->localClient->zipstats == NULL)
345 server->localClient->zipstats = rb_malloc(sizeof(struct ZipStats));
346
347 zips = server->localClient->zipstats;
348
349 zips->in += strtoull(parv[2], NULL, 10);
350 zips->in_wire += strtoull(parv[3], NULL, 10);
351 zips->out += strtoull(parv[4], NULL, 10);
352 zips->out_wire += strtoull(parv[5], NULL, 10);
353
354 if(zips->in > 0)
355 zips->in_ratio = ((double) (zips->in - zips->in_wire) / (double) zips->in) * 100.00;
356 else
357 zips->in_ratio = 0;
358
359 if(zips->out > 0)
360 zips->out_ratio = ((double) (zips->out - zips->out_wire) / (double) zips->out) * 100.00;
361 else
362 zips->out_ratio = 0;
363 }
364
365 static void
366 ssl_process_dead_fd(ssl_ctl_t * ctl, ssl_ctl_buf_t * ctl_buf)
367 {
368 struct Client *client_p;
369 char reason[256];
370 int32_t fd;
371
372 if(ctl_buf->buflen < 6)
373 return; /* bogus message..drop it.. XXX should warn here */
374
375 fd = buf_to_int32(&ctl_buf->buf[1]);
376 rb_strlcpy(reason, &ctl_buf->buf[5], sizeof(reason));
377 client_p = find_cli_fd_hash(fd);
378 if(client_p == NULL)
379 return;
380 if(IsAnyServer(client_p))
381 {
382 sendto_realops_snomask(SNO_GENERAL, L_ALL, "ssld error for %s: %s", client_p->name, reason);
383 ilog(L_SERVER, "ssld error for %s: %s", log_client_name(client_p, SHOW_IP), reason);
384 }
385 exit_client(client_p, client_p, &me, reason);
386 }
387
388
389 static void
390 ssl_process_zip_ready(ssl_ctl_t * ctl, ssl_ctl_buf_t * ctl_buf)
391 {
392 struct Client *client_p;
393 int32_t fd;
394
395 if(ctl_buf->buflen < 5)
396 return; /* bogus message..drop it.. XXX should warn here */
397
398 fd = buf_to_int32(&ctl_buf->buf[1]);
399 client_p = find_cli_fd_hash(fd);
400 if(client_p == NULL)
401 return;
402
403 /* Now start sending the data that should be compressed. */
404 // ClearCork(client_p);
405 send_pop_queue(client_p);
406 /* Start reading uncompressed data. */
407 read_packet(client_p->localClient->F, client_p);
408 }
409
410
411 static void
412 ssl_process_cmd_recv(ssl_ctl_t * ctl)
413 {
414 static const char *cannot_setup_ssl = "ssld cannot setup ssl, check your certificates and private key";
415 static const char *no_ssl_or_zlib = "ssld has neither SSL/TLS or zlib support killing all sslds";
416 rb_dlink_node *ptr, *next;
417 ssl_ctl_buf_t *ctl_buf;
418 if(ctl->dead)
419 return;
420 RB_DLINK_FOREACH_SAFE(ptr, next, ctl->readq.head)
421 {
422 ctl_buf = ptr->data;
423 switch (*ctl_buf->buf)
424 {
425 case 'N':
426 ssl_ok = 0; /* ssld says it can't do ssl/tls */
427 break;
428 case 'D':
429 ssl_process_dead_fd(ctl, ctl_buf);
430 break;
431 case 'S':
432 ssl_process_zipstats(ctl, ctl_buf);
433 break;
434 case 'I':
435 ssl_ok = 0;
436 ilog(L_MAIN, cannot_setup_ssl);
437 sendto_realops_snomask(SNO_GENERAL, L_ALL, cannot_setup_ssl);
438 case 'U':
439 zlib_ok = 0;
440 ssl_ok = 0;
441 ilog(L_MAIN, no_ssl_or_zlib);
442 sendto_realops_snomask(SNO_GENERAL, L_ALL, no_ssl_or_zlib);
443 ssl_killall();
444 break;
445 case 'R':
446 ssl_process_zip_ready(ctl, ctl_buf);
447 break;
448 case 'z':
449 zlib_ok = 0;
450 break;
451 default:
452 ilog(L_MAIN, "Received invalid command from ssld: %s", ctl_buf->buf);
453 sendto_realops_snomask(SNO_GENERAL, L_ALL, "Received invalid command from ssld");
454 break;
455 }
456 rb_dlinkDelete(ptr, &ctl->readq);
457 rb_free(ctl_buf->buf);
458 rb_free(ctl_buf);
459 }
460
461 }
462
463
464 static void
465 ssl_read_ctl(rb_fde_t * F, void *data)
466 {
467 ssl_ctl_buf_t *ctl_buf;
468 ssl_ctl_t *ctl = data;
469 int retlen;
470
471 if(ctl->dead)
472 return;
473 do
474 {
475 ctl_buf = rb_malloc(sizeof(ssl_ctl_buf_t));
476 ctl_buf->buf = rb_malloc(READSIZE);
477 retlen = rb_recv_fd_buf(ctl->F, ctl_buf->buf, READSIZE, ctl_buf->F, 4);
478 ctl_buf->buflen = retlen;
479 if(retlen <= 0)
480 {
481 rb_free(ctl_buf->buf);
482 rb_free(ctl_buf);
483 }
484 else
485 rb_dlinkAddTail(ctl_buf, &ctl_buf->node, &ctl->readq);
486 }
487 while(retlen > 0);
488
489 if(retlen == 0 || (retlen < 0 && !rb_ignore_errno(errno)))
490 {
491 ssl_dead(ctl);
492 return;
493 }
494 ssl_process_cmd_recv(ctl);
495 rb_setselect(ctl->F, RB_SELECT_READ, ssl_read_ctl, ctl);
496 }
497
498 static ssl_ctl_t *
499 which_ssld(void)
500 {
501 ssl_ctl_t *ctl, *lowest = NULL;
502 rb_dlink_node *ptr;
503
504 RB_DLINK_FOREACH(ptr, ssl_daemons.head)
505 {
506 ctl = ptr->data;
507 if(ctl->dead)
508 continue;
509 if(lowest == NULL)
510 {
511 lowest = ctl;
512 continue;
513 }
514 if(ctl->cli_count < lowest->cli_count)
515 lowest = ctl;
516 }
517 return (lowest);
518 }
519
520 static void
521 ssl_write_ctl(rb_fde_t * F, void *data)
522 {
523 ssl_ctl_t *ctl = data;
524 ssl_ctl_buf_t *ctl_buf;
525 rb_dlink_node *ptr, *next;
526 int retlen, x;
527
528 if(ctl->dead)
529 return;
530
531 RB_DLINK_FOREACH_SAFE(ptr, next, ctl->writeq.head)
532 {
533 ctl_buf = ptr->data;
534 /* in theory unix sock_dgram shouldn't ever short write this.. */
535 retlen = rb_send_fd_buf(ctl->F, ctl_buf->F, ctl_buf->nfds, ctl_buf->buf, ctl_buf->buflen, ctl->pid);
536 if(retlen > 0)
537 {
538 rb_dlinkDelete(ptr, &ctl->writeq);
539 for(x = 0; x < ctl_buf->nfds; x++)
540 rb_close(ctl_buf->F[x]);
541 rb_free(ctl_buf->buf);
542 rb_free(ctl_buf);
543
544 }
545 if(retlen == 0 || (retlen < 0 && !rb_ignore_errno(errno)))
546 {
547 ssl_dead(ctl);
548 return;
549 }
550 else
551 {
552 rb_setselect(ctl->F, RB_SELECT_WRITE, ssl_write_ctl, ctl);
553 }
554 }
555 }
556
557 static void
558 ssl_cmd_write_queue(ssl_ctl_t * ctl, rb_fde_t ** F, int count, const void *buf, size_t buflen)
559 {
560 ssl_ctl_buf_t *ctl_buf;
561 int x;
562
563 /* don't bother */
564 if(ctl->dead)
565 return;
566
567 ctl_buf = rb_malloc(sizeof(ssl_ctl_buf_t));
568 ctl_buf->buf = rb_malloc(buflen);
569 memcpy(ctl_buf->buf, buf, buflen);
570 ctl_buf->buflen = buflen;
571
572 for(x = 0; x < count && x < MAXPASSFD; x++)
573 {
574 ctl_buf->F[x] = F[x];
575 }
576 ctl_buf->nfds = count;
577 rb_dlinkAddTail(ctl_buf, &ctl_buf->node, &ctl->writeq);
578 ssl_write_ctl(ctl->F, ctl);
579 }
580
581
582 static void
583 send_new_ssl_certs_one(ssl_ctl_t * ctl, const char *ssl_cert, const char *ssl_private_key, const char *ssl_dh_params)
584 {
585 size_t len;
586
587 len = strlen(ssl_cert) + strlen(ssl_private_key) + strlen(ssl_dh_params) + 5;
588 if(len > sizeof(tmpbuf))
589 {
590 sendto_realops_snomask(SNO_GENERAL, L_ALL,
591 "Parameters for send_new_ssl_certs_one too long (%zu > %zu) to pass to ssld, not sending...",
592 len, sizeof(tmpbuf));
593 ilog(L_MAIN,
594 "Parameters for send_new_ssl_certs_one too long (%zu > %zu) to pass to ssld, not sending...",
595 len, sizeof(tmpbuf));
596 return;
597 }
598 len = rb_snprintf(tmpbuf, sizeof(tmpbuf), "K%c%s%c%s%c%s%c", nul, ssl_cert, nul,
599 ssl_private_key, nul, ssl_dh_params, nul);
600 ssl_cmd_write_queue(ctl, NULL, 0, tmpbuf, len);
601 }
602
603 static void
604 send_init_prng(ssl_ctl_t * ctl, prng_seed_t seedtype, const char *path)
605 {
606 size_t len;
607 const char *s;
608 uint8_t seed = (uint8_t) seedtype;
609
610 if(path == NULL)
611 s = "";
612 else
613 s = path;
614
615 len = strlen(s) + 3;
616 if(len > sizeof(tmpbuf))
617 {
618 sendto_realops_snomask(SNO_GENERAL, L_ALL,
619 "Parameters for send_init_prng too long (%zd > %zd) to pass to ssld, not sending...",
620 len, sizeof(tmpbuf));
621 ilog(L_MAIN,
622 "Parameters for send_init_prng too long (%zd > %zd) to pass to ssld, not sending...",
623 len, sizeof(tmpbuf));
624 return;
625
626 }
627 len = rb_snprintf(tmpbuf, sizeof(tmpbuf), "I%c%s%c", seed, s, nul);
628 ssl_cmd_write_queue(ctl, NULL, 0, tmpbuf, len);
629 }
630
631 void
632 send_new_ssl_certs(const char *ssl_cert, const char *ssl_private_key, const char *ssl_dh_params)
633 {
634 rb_dlink_node *ptr;
635 if(ssl_cert == NULL || ssl_private_key == NULL || ssl_dh_params == NULL)
636 {
637 ssl_ok = 0;
638 return;
639 }
640 RB_DLINK_FOREACH(ptr, ssl_daemons.head)
641 {
642 ssl_ctl_t *ctl = ptr->data;
643 send_new_ssl_certs_one(ctl, ssl_cert, ssl_private_key, ssl_dh_params);
644 }
645 }
646
647
648 ssl_ctl_t *
649 start_ssld_accept(rb_fde_t * sslF, rb_fde_t * plainF, int32_t id)
650 {
651 rb_fde_t *F[2];
652 ssl_ctl_t *ctl;
653 char buf[5];
654 F[0] = sslF;
655 F[1] = plainF;
656
657 buf[0] = 'A';
658 int32_to_buf(&buf[1], id);
659 ctl = which_ssld();
660 ctl->cli_count++;
661 ssl_cmd_write_queue(ctl, F, 2, buf, sizeof(buf));
662 return ctl;
663 }
664
665 ssl_ctl_t *
666 start_ssld_connect(rb_fde_t * sslF, rb_fde_t * plainF, int32_t id)
667 {
668 rb_fde_t *F[2];
669 ssl_ctl_t *ctl;
670 char buf[5];
671 F[0] = sslF;
672 F[1] = plainF;
673
674 buf[0] = 'C';
675 int32_to_buf(&buf[1], id);
676
677 ctl = which_ssld();
678 ctl->cli_count++;
679 ssl_cmd_write_queue(ctl, F, 2, buf, sizeof(buf));
680 return ctl;
681 }
682
683 void
684 ssld_decrement_clicount(ssl_ctl_t * ctl)
685 {
686 if(ctl == NULL)
687 return;
688
689 ctl->cli_count--;
690 if(ctl->dead && !ctl->cli_count)
691 {
692 free_ssl_daemon(ctl);
693 }
694 }
695
696 /*
697 * what we end up sending to the ssld process for ziplinks is the following
698 * Z[ourfd][level][RECVQ]
699 * Z = ziplinks command = buf[0]
700 * ourfd = Our end of the socketpair = buf[1..4]
701 * level = zip level buf[5]
702 * recvqlen = our recvq len = buf[6-7]
703 * recvq = any data we read prior to starting ziplinks
704 */
705 void
706 start_zlib_session(void *data)
707 {
708 struct Client *server = (struct Client *) data;
709 uint16_t recvqlen;
710 uint8_t level;
711 void *xbuf;
712
713 rb_fde_t *F[2];
714 rb_fde_t *xF1, *xF2;
715 char *buf;
716 void *recvq_start;
717
718 size_t hdr = (sizeof(uint8_t) * 2) + sizeof(int32_t);
719 size_t len;
720 int cpylen, left;
721
722 server->localClient->event = NULL;
723
724 recvqlen = rb_linebuf_len(&server->localClient->buf_recvq);
725
726 len = recvqlen + hdr;
727
728 if(len > READBUF_SIZE)
729 {
730 sendto_realops_snomask(SNO_GENERAL, L_ALL,
731 "ssld - attempted to pass message of %zd len, max len %d, giving up",
732 len, READBUF_SIZE);
733 ilog(L_MAIN, "ssld - attempted to pass message of %zd len, max len %d, giving up", len, READBUF_SIZE);
734 exit_client(server, server, server, "ssld readbuf exceeded");
735 return;
736 }
737
738 buf = rb_malloc(len);
739 level = ConfigFileEntry.compression_level;
740
741 int32_to_buf(&buf[1], rb_get_fd(server->localClient->F));
742 buf[5] = (char) level;
743
744 recvq_start = &buf[6];
745 server->localClient->zipstats = rb_malloc(sizeof(struct ZipStats));
746
747 xbuf = recvq_start;
748 left = recvqlen;
749
750 do
751 {
752 cpylen = rb_linebuf_get(&server->localClient->buf_recvq, xbuf, left, LINEBUF_PARTIAL, LINEBUF_RAW);
753 left -= cpylen;
754 xbuf = (void *) (((uintptr_t) xbuf) + cpylen);
755 }
756 while(cpylen > 0);
757
758 /* Pass the socket to ssld. */
759 *buf = 'Z';
760 rb_socketpair(AF_UNIX, SOCK_STREAM, 0, &xF1, &xF2, "Initial zlib socketpairs");
761
762 F[0] = server->localClient->F;
763 F[1] = xF1;
764 del_from_cli_fd_hash(server);
765 server->localClient->F = xF2;
766 /* need to redo as what we did before isn't valid now */
767 int32_to_buf(&buf[1], rb_get_fd(server->localClient->F));
768 add_to_cli_fd_hash(server);
769 server->localClient->ssl_ctl = which_ssld();
770 server->localClient->ssl_ctl->cli_count++;
771 ssl_cmd_write_queue(server->localClient->ssl_ctl, F, 2, buf, len);
772 rb_free(buf);
773 }
774
775 static void
776 collect_zipstats(void *unused)
777 {
778 rb_dlink_node *ptr;
779 struct Client *target_p;
780 char buf[sizeof(uint8_t) + sizeof(int32_t) + HOSTLEN];
781 void *odata;
782 size_t len;
783 int32_t id;
784
785 buf[0] = 'S';
786 odata = buf + sizeof(uint8_t) + sizeof(int32_t);
787
788 RB_DLINK_FOREACH(ptr, serv_list.head)
789 {
790 target_p = ptr->data;
791 if(IsCapable(target_p, CAP_ZIP))
792 {
793 len = sizeof(uint8_t) + sizeof(uint32_t);
794
795 id = rb_get_fd(target_p->localClient->F);
796 int32_to_buf(&buf[1], rb_get_fd(target_p->localClient->F));
797 rb_strlcpy(odata, target_p->name, (sizeof(buf) - len));
798 len += strlen(odata) + 1; /* Get the \0 as well */
799 ssl_cmd_write_queue(target_p->localClient->ssl_ctl, NULL, 0, buf, len);
800 }
801 }
802 }
803
804 static void
805 cleanup_dead_ssl(void *unused)
806 {
807 rb_dlink_node *ptr, *next;
808 ssl_ctl_t *ctl;
809 RB_DLINK_FOREACH_SAFE(ptr, next, ssl_daemons.head)
810 {
811 ctl = ptr->data;
812 if(ctl->dead && !ctl->cli_count)
813 {
814 free_ssl_daemon(ctl);
815 }
816 }
817 }
818
819 int
820 get_ssld_count(void)
821 {
822 return ssld_count;
823 }
824
825 void
826 init_ssld(void)
827 {
828 rb_event_addish("collect_zipstats", collect_zipstats, NULL, ZIPSTATS_TIME);
829 rb_event_addish("cleanup_dead_ssld", cleanup_dead_ssl, NULL, 1200);
830 }