server/: Maybe use GNU ADNS rather than mLib's `bres' for name resolution.
[tripe] / server / admin.c
1 /* -*-c-*-
2 *
3 * Admin interface for configuration
4 *
5 * (c) 2001 Straylight/Edgeware
6 */
7
8 /*----- Licensing notice --------------------------------------------------*
9 *
10 * This file is part of Trivial IP Encryption (TrIPE).
11 *
12 * TrIPE is free software: you can redistribute it and/or modify it under
13 * the terms of the GNU General Public License as published by the Free
14 * Software Foundation; either version 3 of the License, or (at your
15 * option) any later version.
16 *
17 * TrIPE is distributed in the hope that it will be useful, but WITHOUT
18 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
19 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
20 * for more details.
21 *
22 * You should have received a copy of the GNU General Public License
23 * along with TrIPE. If not, see <https://www.gnu.org/licenses/>.
24 */
25
26 /*----- Header files ------------------------------------------------------*/
27
28 #include "tripe.h"
29
30 /*----- Global variables --------------------------------------------------*/
31
32 #ifndef NTRACE
33
34 const trace_opt tr_opts[] = {
35 { 't', T_TUNNEL, "tunnel events" },
36 { 'r', T_PEER, "peer events" },
37 { 'a', T_ADMIN, "admin interface" },
38 { 's', T_KEYSET, "symmetric keyset management" },
39 { 'x', T_KEYEXCH, "key exchange" },
40 { 'm', T_KEYMGMT, "key management" },
41 { 'l', T_CHAL, "challenge management" },
42 { 'v', T_PRIVSEP, "privilege separation" },
43 { 'p', T_PACKET, "packet contents" },
44 { 'c', T_CRYPTO, "crypto details" },
45 { 'A', T_ALL, "all of the above" },
46 { 0, 0, 0 }
47 };
48
49 unsigned tr_flags = 0;
50 #endif
51
52 static const trace_opt w_opts[] = {
53 #ifndef NTRACE
54 { 't', AF_TRACE, "trace messages" },
55 #endif
56 { 'n', AF_NOTE, "asynchronous notifications" },
57 { 'w', AF_WARN, "warnings" },
58 { 'A', AF_ALLMSGS, "all of the above" },
59 { 0, 0, 0 }
60 };
61
62 /*----- Static variables --------------------------------------------------*/
63
64 #ifdef HAVE_LIBADNS
65 static adns_state ads;
66 sel_hook hook;
67 #endif
68 static admin *admins;
69 static admin *a_dead;
70 static sel_file sock;
71 static const char *sockname;
72 static sym_table a_svcs;
73 static unsigned flags = 0;
74 static admin *a_stdin = 0;
75 static sig s_term, s_int, s_hup;
76
77 #define F_DAEMON 1u
78 #define F_INIT 2u
79 #define F_FOREGROUND 4u
80
81 #define T_RESOLVE SEC(30)
82 #define T_PING SEC(5)
83
84 static void a_destroy(admin */*a*/);
85
86 #define BOOL(x) ((x) ? "t" : "nil")
87
88 /*----- Output functions --------------------------------------------------*/
89
90 /* --- @trywrite@ --- *
91 *
92 * Arguments: @admin *a@ = pointer to an admin block
93 * @const char *p@ = pointer to buffer to write
94 * @size_t sz@ = size of data to write
95 *
96 * Returns: The number of bytes written, or less than zero on error.
97 *
98 * Use: Attempts to write data to a client.
99 */
100
101 static ssize_t trywrite(admin *a, const char *p, size_t sz)
102 {
103 ssize_t n, done = 0;
104
105 again:
106 if (!sz)
107 return (done);
108 n = write(a->w.fd, p, sz);
109 if (n > 0) {
110 done += n;
111 p += n;
112 sz -= n;
113 goto again;
114 }
115 if (n < 0) {
116 if (errno == EINTR)
117 goto again;
118 if (errno != EAGAIN && errno != EWOULDBLOCK) {
119 a_destroy(a);
120 a_warn("ADMIN", "client-write-error", "?ERRNO", A_END);
121 return (-1);
122 }
123 }
124 return (done);
125 }
126
127 /* --- @doqueue@ -- *
128 *
129 * Arguments: @oqueue *q@ = pointer to output queue
130 * @const char *p@ = pointer to buffer to write
131 * @size_t sz@ = size of buffer
132 *
133 * Returns: Nonzero if the queue was previously empty.
134 *
135 * Use: Queues data to be written later.
136 */
137
138 static int doqueue(oqueue *q, const char *p, size_t sz)
139 {
140 obuf *o;
141 int rc = 0;
142 size_t n;
143
144 o = q->tl;
145 if (!o)
146 rc = 1;
147 else if (o->p_in < o->buf + OBUFSZ)
148 goto noalloc;
149
150 do {
151 o = xmalloc(sizeof(obuf));
152 o->next = 0;
153 o->p_in = o->p_out = o->buf;
154 if (q->tl)
155 q->tl->next = o;
156 else
157 q->hd = o;
158 q->tl = o;
159
160 noalloc:
161 n = o->buf + OBUFSZ - o->p_in;
162 if (n > sz)
163 n = sz;
164 memcpy(o->p_in, p, n);
165 o->p_in += n;
166 p += n;
167 sz -= n;
168 } while (sz);
169
170 return (rc);
171 }
172
173 /* --- @dosend@ --- *
174 *
175 * Arguemnts: @admin *a@ = pointer to an admin block
176 * @const char *p@ = pointer to buffer to write
177 * @size_t sz@ = size of data to write
178 *
179 * Returns: ---
180 *
181 * Use: Sends data to an admin client.
182 */
183
184 static void dosend(admin *a, const char *p, size_t sz)
185 {
186 ssize_t n;
187
188 if (a->f & AF_DEAD)
189 return;
190 if (!a->out.hd) {
191 if ((n = trywrite(a, p, sz)) < 0)
192 return;
193 p += n;
194 sz -= n;
195 if (!sz)
196 return;
197 }
198 if (doqueue(&a->out, p, sz))
199 sel_addfile(&a->w);
200 }
201
202 /* --- @a_flush@ --- *
203 *
204 * Arguments: @int fd@ = file descriptor
205 * @unsigned mode@ = what's happening
206 * @void *v@ = pointer to my admin block
207 *
208 * Returns: ---
209 *
210 * Use: Flushes buffers when a client is ready to read again.
211 */
212
213 static void a_flush(int fd, unsigned mode, void *v)
214 {
215 admin *a = v;
216 obuf *o, *oo;
217 ssize_t n;
218
219 o = a->out.hd;
220 while (o) {
221 if ((n = trywrite(a, o->p_out, o->p_in - o->p_out)) < 0)
222 return;
223 o->p_out += n;
224 if (o->p_in < o->p_out)
225 break;
226 oo = o;
227 o = o->next;
228 xfree(oo);
229 }
230 a->out.hd = o;
231 if (!o) {
232 a->out.tl = 0;
233 sel_rmfile(&a->w);
234 }
235 }
236
237 /*----- Utility functions -------------------------------------------------*/
238
239 /* --- @a_vformat@ --- *
240 *
241 * Arguments: @dstr *d@ = where to leave the formatted message
242 * @const char *fmt@ = pointer to format string
243 * @va_list *ap@ = arguments in list
244 *
245 * Returns: ---
246 *
247 * Use: Main message token formatting driver. The arguments are
248 * interleaved formatting tokens and their parameters, finally
249 * terminated by an entry @A_END@.
250 *
251 * Tokens recognized:
252 *
253 * * "*..." ... -- pretokenized @dstr_putf@-like string
254 *
255 * * "?ADDR" SOCKADDR -- a socket address, to be converted
256 *
257 * * "?B64" BUFFER SIZE -- binary data to be base64-encoded
258 *
259 * * "?TOKENS" VECTOR -- null-terminated vector of tokens
260 *
261 * * "?PEER" PEER -- peer's name
262 *
263 * * "?ERRNO" ERRNO -- system error code
264 *
265 * * "[!]..." ... -- @dstr_putf@-like string as single token
266 */
267
268 void a_vformat(dstr *d, const char *fmt, va_list *ap)
269 {
270 dstr dd = DSTR_INIT;
271
272 while (fmt) {
273 if (*fmt == '*') {
274 if (d->len) dstr_putc(d, ' ');
275 dstr_vputf(d, fmt + 1, ap);
276 } else if (*fmt == '?') {
277 if (strcmp(fmt, "?ADDR") == 0) {
278 const addr *a = va_arg(*ap, const addr *);
279 char name[NI_MAXHOST], serv[NI_MAXSERV];
280 int ix, err;
281 if ((err = getnameinfo(&a->sa, addrsz(a),
282 name, sizeof(name), serv, sizeof(serv),
283 (NI_NUMERICHOST | NI_NUMERICSERV |
284 NI_DGRAM)))) {
285 dstr_putf(d, " E%d", err);
286 u_quotify(d, gai_strerror(err));
287 } else {
288 ix = afix(a->sa.sa_family); assert(ix >= 0);
289 u_quotify(d, aftab[ix].name);
290 u_quotify(d, name);
291 u_quotify(d, serv);
292 }
293 } else if (strcmp(fmt, "?B64") == 0) {
294 const octet *p = va_arg(*ap, const octet *);
295 size_t n = va_arg(*ap, size_t);
296 codec *b64 = base64_class.encoder(CDCF_NOEQPAD, "", 0);
297 dstr_putc(d, ' ');
298 b64->ops->code(b64, p, n, d);
299 b64->ops->code(b64, 0, 0, d);
300 b64->ops->destroy(b64);
301 } else if (strcmp(fmt, "?TOKENS") == 0) {
302 const char *const *av = va_arg(*ap, const char *const *);
303 while (*av) u_quotify(d, *av++);
304 } else if (strcmp(fmt, "?PEER") == 0)
305 u_quotify(d, p_name(va_arg(*ap, peer *)));
306 else if (strcmp(fmt, "?ERRNO") == 0) {
307 dstr_putf(d, " E%d", errno);
308 u_quotify(d, strerror(errno));
309 } else
310 abort();
311 } else {
312 if (*fmt == '!') fmt++;
313 DRESET(&dd);
314 dstr_vputf(&dd, fmt, ap);
315 u_quotify(d, dd.buf);
316 }
317 fmt = va_arg(*ap, const char *);
318 }
319 dstr_putz(d);
320
321 dstr_destroy(&dd);
322 }
323
324 /* --- @a_format@ --- *
325 *
326 * Arguments: @dstr *d@ = where to leave the formatted message
327 * @const char *fmt@ = pointer to format string
328 *
329 * Returns: ---
330 *
331 * Use: Writes a tokenized message into a string, for later
332 * presentation.
333 */
334
335 void a_format(dstr *d, const char *fmt, ...)
336 {
337 va_list ap;
338
339 va_start(ap, fmt);
340 a_vformat(d, fmt, &ap);
341 va_end(ap);
342 }
343
344 /* --- @a_write@, @a_vwrite@ --- *
345 *
346 * Arguments: @admin *a@ = admin connection to write to
347 * @const char *status@ = status code to report
348 * @const char *tag@ = tag string, or null
349 * @const char *fmt@ = pointer to format string
350 * @va_list *ap@ = arguments in list
351 * @...@ = other arguments
352 *
353 * Returns: ---
354 *
355 * Use: Sends a message to an admin connection.
356 */
357
358 static void a_vwrite(admin *a, const char *status, const char *tag,
359 const char *fmt, va_list *ap)
360 {
361 dstr d = DSTR_INIT;
362
363 if (tag) dstr_puts(&d, "BG");
364 dstr_puts(&d, status);
365 if (tag) u_quotify(&d, tag);
366 a_vformat(&d, fmt, ap);
367 dstr_putc(&d, '\n');
368 dosend(a, d.buf, d.len);
369 dstr_destroy(&d);
370 }
371
372 static void a_write(admin *a, const char *status, const char *tag,
373 const char *fmt, ...)
374 {
375 va_list ap;
376
377 va_start(ap, fmt);
378 a_vwrite(a, status, tag, fmt, &ap);
379 va_end(ap);
380 }
381
382 /* --- @a_ok@, @a_fail@ --- *
383 *
384 * Arguments: @admin *a@ = connection
385 * @const char *fmt@ = format string
386 * @...@ = other arguments
387 *
388 * Returns: ---
389 *
390 * Use: Convenience functions for @a_write@.
391 */
392
393 static void a_ok(admin *a) { a_write(a, "OK", 0, A_END); }
394
395 static void a_fail(admin *a, const char *fmt, ...)
396 {
397 va_list ap;
398
399 va_start(ap, fmt);
400 a_vwrite(a, "FAIL", 0, fmt, &ap);
401 va_end(ap);
402 }
403
404 /* --- @a_info@ --- *
405 *
406 * Arguments: @admin *a@ = connection
407 * @const char *fmt@ = format string
408 * @...@ = other arguments
409 *
410 * Returns: ---
411 *
412 * Use: Report information to an admin client.
413 */
414
415 void a_info(admin *a, const char *fmt, ...)
416 {
417 va_list ap;
418
419 va_start(ap, fmt);
420 a_vwrite(a, "INFO", 0, fmt, &ap);
421 va_end(ap);
422 }
423
424 /* --- @a_alert@, @a_valert@, @a_rawalert@ --- *
425 *
426 * Arguments: @unsigned f_and, f_eq@ = filter for connections
427 * @const char *status@ = status string
428 * @const char *fmt@ = pointer to format string
429 * @const char *p@ = pointer to raw string
430 * @size_t sz@ = size of raw string
431 * @va_list *ap@ = arguments in list
432 * @...@ = other arguments
433 *
434 * Returns: ---
435 *
436 * Use: Write a message to all admin connections matched by the given
437 * filter.
438 */
439
440 static void a_rawalert(unsigned f_and, unsigned f_eq, const char *status,
441 const char *p, size_t sz)
442 {
443 admin *a, *aa;
444 dstr d = DSTR_INIT;
445
446 if (!(flags & F_INIT))
447 return;
448 dstr_puts(&d, status);
449 if (p) {
450 dstr_putc(&d, ' ');
451 dstr_putm(&d, p, sz);
452 }
453 dstr_putc(&d, '\n');
454 p = d.buf;
455 sz = d.len;
456 for (a = admins; a; a = aa) {
457 aa = a->next;
458 if ((a->f & f_and) == f_eq)
459 dosend(a, d.buf, d.len);
460 }
461 dstr_destroy(&d);
462 }
463
464 static void a_valert(unsigned f_and, unsigned f_eq, const char *status,
465 const char *fmt, va_list *ap)
466 {
467 dstr d = DSTR_INIT;
468
469 if (!(flags & F_INIT))
470 return;
471 a_vformat(&d, fmt, ap);
472 a_rawalert(f_and, f_eq, status, fmt ? d.buf : 0, fmt ? d.len : 0);
473 dstr_destroy(&d);
474 }
475
476 static void a_alert(unsigned f_and, unsigned f_eq, const char *status,
477 const char *fmt, ...)
478 {
479 va_list ap;
480
481 va_start(ap, fmt);
482 a_valert(f_and, f_eq, status, fmt, &ap);
483 va_end(ap);
484 }
485
486 /* --- @a_warn@ --- *
487 *
488 * Arguments: @const char *fmt@ = pointer to format string
489 * @...@ = other arguments
490 *
491 * Returns: ---
492 *
493 * Use: Informs all admin connections of a warning.
494 */
495
496 void a_warn(const char *fmt, ...)
497 {
498 va_list ap;
499
500 va_start(ap, fmt);
501 if (flags & F_INIT)
502 a_valert(0, 0, "WARN", fmt, &ap);
503 else {
504 dstr d = DSTR_INIT;
505 fprintf(stderr, "%s: ", QUIS);
506 a_vformat(&d, fmt, &ap);
507 dstr_putc(&d, '\n');
508 dstr_write(&d, stderr);
509 dstr_destroy(&d);
510 }
511 va_end(ap);
512 }
513
514 /* --- @a_trace@ --- *
515 *
516 * Arguments: @const char *p@ = pointer to a buffer
517 * @size_t sz@ = size of the buffer
518 * @void *v@ = uninteresting pointer
519 *
520 * Returns: ---
521 *
522 * Use: Custom trace output handler. Sends trace messages to
523 * interested admin connections.
524 */
525
526 #ifndef NTRACE
527 static void a_trace(const char *p, size_t sz, void *v)
528 { a_rawalert(AF_TRACE, AF_TRACE, "TRACE", p, sz); }
529 #endif
530
531 /* --- @a_notify@ --- *
532 *
533 * Arguments: @const char *fmt@ = pointer to format string
534 * @...@ = other arguments
535 *
536 * Returns: ---
537 *
538 * Use: Sends a notification to interested admin connections.
539 */
540
541 void a_notify(const char *fmt, ...)
542 {
543 va_list ap;
544
545 va_start(ap, fmt);
546 a_valert(AF_NOTE, AF_NOTE, "NOTE", fmt, &ap);
547 va_end(ap);
548 }
549
550 /* --- @a_quit@ --- *
551 *
552 * Arguments: ---
553 *
554 * Returns: ---
555 *
556 * Use: Shuts things down nicely.
557 */
558
559 void a_quit(void)
560 {
561 close(sock.fd);
562 unlink(sockname);
563 FOREACH_PEER(p, { p_destroy(p); });
564 ps_quit();
565 exit(0);
566 }
567
568 /* --- @a_sigdie@ --- *
569 *
570 * Arguments: @int sig@ = signal number
571 * @void *v@ = an uninteresting argument
572 *
573 * Returns: ---
574 *
575 * Use Shuts down on receipt of a fatal signal.
576 */
577
578 static void a_sigdie(int sig, void *v)
579 {
580 char *p;
581 char buf[20];
582
583 switch (sig) {
584 case SIGTERM: p = "SIGTERM"; break;
585 case SIGINT: p = "SIGINT"; break;
586 default:
587 sprintf(buf, "%i", sig);
588 p = buf;
589 break;
590 }
591 a_warn("SERVER", "quit", "signal", "%s", p, A_END);
592 a_quit();
593 }
594
595 /* --- @a_sighup@ --- *
596 *
597 * Arguments: @int sig@ = signal number
598 * @void *v@ = an uninteresting argument
599 *
600 * Returns: ---
601 *
602 * Use Logs a message about SIGHUP not being useful.
603 */
604
605 static void a_sighup(int sig, void *v)
606 { a_warn("SERVER", "ignore", "signal", "SIGHUP", A_END); }
607
608 /* --- @a_parsetime@ --- *
609 *
610 * Arguments; @const char *p@ = time string to parse
611 *
612 * Returns: Time in seconds, or @< 0@ on error.
613 */
614
615 static long a_parsetime(const char *p)
616 {
617 char *q;
618 long t = strtol(p, &q, 0);
619
620 switch (*q) {
621 case 'd': t *= 24;
622 case 'h': t *= 60;
623 case 'm': t *= 60;
624 case 's': if (q[1] != 0)
625 default: t = -1;
626 case 0: break;
627 }
628 return (t);
629 }
630
631 /* --- @a_findpeer@ --- *
632 *
633 * Arguments: @admin *a@ = admin connection
634 * @const char *pn@ = peer name
635 *
636 * Returns: The peer, or null if not there.
637 *
638 * Use: Finds a peer, reporting an error if it failed.
639 */
640
641 static peer *a_findpeer(admin *a, const char *pn)
642 {
643 peer *p;
644
645 if ((p = p_find(pn)) == 0)
646 a_fail(a, "unknown-peer", "%s", pn, A_END);
647 return (p);
648 }
649
650 /*----- Backgrounded operations -------------------------------------------*/
651
652 #define BGTAG(bg) \
653 (((admin_bgop *)(bg))->tag ? ((admin_bgop *)(bg))->tag : "<foreground>")
654
655 /* --- @a_bgfind@ --- *
656 *
657 * Arguments: @admin *a@ = a client block
658 * @const char *tag@ = the requested tag
659 *
660 * Returns: The requested background job, or null.
661 */
662
663 static admin_bgop *a_bgfind(admin *a, const char *tag)
664 {
665 admin_bgop *bg;
666
667 for (bg = a->bg; bg; bg = bg->next) {
668 if (bg->tag && strcmp(tag, bg->tag) == 0)
669 return (bg);
670 }
671 return (0);
672 }
673
674 /* --- @a_bgrelease@ --- *
675 *
676 * Arguments: @admin_bgop *bg@ = backgrounded operation
677 *
678 * Returns: ---
679 *
680 * Use: Removes a backgrounded operation from the queue, since
681 * (presumably) it's done.
682 */
683
684 static void a_bgrelease(admin_bgop *bg)
685 {
686 admin *a = bg->a;
687
688 T( trace(T_ADMIN, "admin: release bgop %s", BGTAG(bg)); )
689 if (bg->tag) xfree(bg->tag);
690 else selbuf_enable(&a->b);
691 if (bg->next) bg->next->prev = bg->prev;
692 if (bg->prev) bg->prev->next = bg->next;
693 else a->bg = bg->next;
694 xfree(bg);
695 if (!a->bg && (a->f & AF_CLOSE)) a_destroy(a);
696 }
697
698 /* --- @a_bgok@, @a_bginfo@, @a_bgfail@ --- *
699 *
700 * Arguments: @admin_bgop *bg@ = backgrounded operation
701 * @const char *fmt@ = format string
702 * @...@ = other arguments
703 *
704 * Returns: ---
705 *
706 * Use: Convenience functions for @a_write@.
707 */
708
709 static void a_bgok(admin_bgop *bg)
710 { a_write(bg->a, "OK", bg->tag, A_END); }
711
712 static void a_bginfo(admin_bgop *bg, const char *fmt, ...)
713 {
714 va_list ap;
715 va_start(ap, fmt);
716 a_vwrite(bg->a, "INFO", bg->tag, fmt, &ap);
717 va_end(ap);
718 }
719
720 static void a_bgfail(admin_bgop *bg, const char *fmt, ...)
721 {
722 va_list ap;
723 va_start(ap, fmt);
724 a_vwrite(bg->a, "FAIL", bg->tag, fmt, &ap);
725 va_end(ap);
726 }
727
728 /* --- @a_bgadd@ --- *
729 *
730 * Arguments: @admin *a@ = administration connection
731 * @admin_bgop *bg@ = pointer to background operation
732 * @const char *tag@ = background tag, or null for foreground
733 * @void (*cancel)(admin_bgop *)@ = cancel function
734 *
735 * Returns: Zero for success, nonzero on failure.
736 *
737 * Use: Links a background job into the list.
738 */
739
740 static int a_bgadd(admin *a, admin_bgop *bg, const char *tag,
741 void (*cancel)(admin_bgop *))
742 {
743 if (tag) {
744 if (a_bgfind(a, tag)) {
745 a_fail(a, "tag-exists", "%s", tag, A_END);
746 return (-1);
747 }
748 bg->tag = xstrdup(tag);
749 }
750 else {
751 bg->tag = 0;
752 selbuf_disable(&a->b);
753 }
754 bg->a = a;
755 bg->cancel = cancel;
756 bg->next = a->bg;
757 bg->prev = 0;
758 if (a->bg) a->bg->prev = bg;
759 a->bg = bg;
760 T( trace(T_ADMIN, "admin: add bgop %s", BGTAG(bg)); )
761 if (tag) a_write(a, "DETACH", tag, A_END);
762 return (0);
763 }
764
765 /*----- Job table manipulation --------------------------------------------*/
766
767 #define JOB_SHIFT 16
768 #define JOB_INDEXMASK ((1ul << JOB_SHIFT) - 1)
769 #define JOB_SEQMASK ((1ul << (32 - JOB_SHIFT)) - 1)
770
771 #define JOB_END 0xfffffffful
772
773 static unsigned long a_joboffset;
774
775 /* --- @a_jobidencode@ --- *
776 *
777 * Arguments: @admin_svcop *svc@ = pointer to a service operation
778 *
779 * Returns: A jobid for this job, in an internal static buffer.
780 *
781 * Use: Constructs a jobid. In order to dissuade people from
782 * predicting jobids, we obfuscate them.
783 *
784 * A `raw' jobid consists of two 16-bit fields. The low 16 bits
785 * are an index into a big array. The high 16 bits are a
786 * sequence number recording how many times that slot has been
787 * reused.
788 *
789 * This `raw' jobid is then obfuscated by adding a randomly-
790 * generated offset, and multiplying (mod %$2^{32}$%) by a fixed
791 * odd constant.
792 */
793
794 static const char *a_jobidencode(admin_svcop *svc)
795 {
796 admin_jobtable *j = &svc->prov->j;
797 static char buf[10];
798 unsigned long pre;
799 unsigned seq;
800
801 assert(svc->index <= JOB_INDEXMASK);
802 seq = j->v[svc->index].seq;
803 assert(seq <= JOB_SEQMASK);
804 pre = (unsigned long)svc->index | ((unsigned long)seq << JOB_SHIFT);
805 sprintf(buf, "J%08lx", ((pre + a_joboffset) * 0x0f87a7a3ul) & 0xffffffff);
806 return (buf);
807 }
808
809 /* --- @a_jobiddecode@ --- *
810 *
811 * Arguments: @admin_jobtable *j@ = pointer to a job table
812 * @const char *jid@ = pointer to a jobid string
813 *
814 * Returns: A pointer to the job's @svcop@ structure.
815 */
816
817 static admin_svcop *a_jobiddecode(admin_jobtable *j, const char *jid)
818 {
819 unsigned i;
820 unsigned long pre;
821
822 if (jid[0] != 'J')
823 return (0);
824 for (i = 1; i < 9; i++) {
825 if (!isxdigit((unsigned char)jid[i]))
826 return (0);
827 }
828 if (jid[9] != 0)
829 return (0);
830 pre = strtoul(jid + 1, 0, 16);
831 pre = ((pre * 0xbd11c40bul) - a_joboffset) & 0xffffffff;
832 i = pre & JOB_INDEXMASK;
833 if (i >= j->n || j->v[i].seq != (pre >> JOB_SHIFT))
834 return (0);
835 return (j->v[i].u.op);
836 }
837
838 /* --- @a_jobcreate@ --- *
839 *
840 * Arguments: @admin *a@ = pointer to administration client
841 *
842 * Returns: A pointer to a freshly-allocated @svcop@, or null.
843 *
844 * Use: Allocates a fresh @svcop@ and links it into a job table.
845 */
846
847 static admin_svcop *a_jobcreate(admin *a)
848 {
849 admin_svcop *svc;
850 unsigned i;
851 unsigned sz;
852 admin_jobtable *j = &a->j;
853
854 if (j->free != JOB_END) {
855 i = j->free;
856 j->free = j->v[i].u.next;
857 } else {
858 if (j->n == j->sz) {
859 if (j->sz > JOB_INDEXMASK)
860 return (0);
861 sz = j->sz;
862 if (!sz) {
863 j->sz = 16;
864 j->v = xmalloc(j->sz * sizeof(*j->v));
865 } else {
866 j->sz = sz << 1;
867 j->v = xrealloc(j->v, j->sz * sizeof(*j->v), sz * sizeof(*j->v));
868 }
869 }
870 i = j->n++;
871 j->v[i].seq = 0;
872 }
873 svc = xmalloc(sizeof(*svc));
874 svc->index = i;
875 svc->prov = a;
876 svc->next = j->active;
877 svc->prev = 0;
878 if (j->active) j->active->prev = svc;
879 j->active = svc;
880 j->v[i].u.op = svc;
881 IF_TRACING(T_ADMIN, {
882 trace(T_ADMIN, "admin: created job %s (%u)", a_jobidencode(svc), i);
883 })
884 return (svc);
885 }
886
887 /* --- @a_jobdestroy@ --- *
888 *
889 * Arguments: @admin_svcop *svc@ = pointer to job block
890 *
891 * Returns: ---
892 *
893 * Use: Frees up a completed (or cancelled) job.
894 */
895
896 static void a_jobdestroy(admin_svcop *svc)
897 {
898 admin *a = svc->prov;
899 admin_jobtable *j = &a->j;
900 unsigned i = svc->index;
901
902 IF_TRACING(T_ADMIN, {
903 trace(T_ADMIN, "admin: destroying job %s (%u)", a_jobidencode(svc), i);
904 })
905 assert(j->v[i].u.op = svc);
906 j->v[i].u.next = j->free;
907 j->v[i].seq++;
908 j->free = i;
909 if (svc->next) svc->next->prev = svc->prev;
910 if (svc->prev) svc->prev->next = svc->next;
911 else j->active = svc->next;
912 }
913
914 /* --- @a_jobtableinit@ --- *
915 *
916 * Arguments: @admin_jobtable *j@ = pointer to job table
917 *
918 * Returns: ---
919 *
920 * Use: Initializes a job table.
921 */
922
923 static void a_jobtableinit(admin_jobtable *j)
924 {
925 if (!a_joboffset)
926 a_joboffset = GR_RANGE(&rand_global, 0xffffffff) + 1;
927 j->n = j->sz = 0;
928 j->active = 0;
929 j->free = JOB_END;
930 j->v = 0;
931 }
932
933 /* --- @a_jobtablefinal@ --- *
934 *
935 * Arguments: @admin_jobtable *j@ = pointer to job table
936 *
937 * Returns: ---
938 *
939 * Use: Closes down a job table.
940 */
941
942 static void a_jobtablefinal(admin_jobtable *j)
943 {
944 admin_svcop *svc, *ssvc;
945
946 for (svc = j->active; svc; svc = ssvc) {
947 ssvc = svc->next;
948 a_bgfail(&svc->bg, "provider-failed", A_END);
949 a_bgrelease(&svc->bg);
950 }
951 if (j->v) xfree(j->v);
952 }
953
954 /*----- Services infrastructure -------------------------------------------*/
955
956 /* --- @a_svcfind@ --- *
957 *
958 * Arguments: @admin *a@ = the requesting client
959 * @const char *name@ = service name wanted
960 *
961 * Returns: The service requested, or null.
962 *
963 * Use: Finds a service; reports an error if the service couldn't be
964 * found.
965 */
966
967 static admin_service *a_svcfind(admin *a, const char *name)
968 {
969 admin_service *svc;
970
971 if ((svc = sym_find(&a_svcs, name, -1, 0, 0)) == 0) {
972 a_fail(a, "unknown-service", "%s", name, A_END);
973 return (0);
974 }
975 return (svc);
976 }
977
978 /* --- @a_svcunlink@ --- *
979 *
980 * Arguments: @admin_service *svc@ = pointer to service structure
981 *
982 * Returns: ---
983 *
984 * Use: Unlinks the service from its provider, without issuing a
985 * message or freeing the structure. The version string is
986 * freed, however.
987 */
988
989 static void a_svcunlink(admin_service *svc)
990 {
991 if (svc->next)
992 svc->next->prev = svc->prev;
993 if (svc->prev)
994 svc->prev->next = svc->next;
995 else
996 svc->prov->svcs = svc->next;
997 xfree(svc->version);
998 }
999
1000 /* --- @a_svcrelease@ --- *
1001 *
1002 * Arguments: @admin_service *svc@ = pointer to service structure
1003 *
1004 * Returns: ---
1005 *
1006 * Use: Releases a service and frees its structure.
1007 */
1008
1009 static void a_svcrelease(admin_service *svc)
1010 {
1011 a_notify("SVCRELEASE", "%s", SYM_NAME(svc), A_END);
1012 a_svcunlink(svc);
1013 sym_remove(&a_svcs, svc);
1014 }
1015
1016 /*----- Name resolution operations ----------------------------------------*/
1017
1018 #ifdef HAVE_LIBADNS
1019
1020 /* --- @before_select@ --- *
1021 *
1022 * Arguments: @sel_state *s@ = the @sel@ multiplexor (unused)
1023 * @sel_args *a@ = input to @select@, to be updated
1024 * @void *p@ = a context pointer (unused)
1025 *
1026 * Returns: ---
1027 *
1028 * Use: An I/O multiplexor hook, called just before waiting for I/O
1029 * events.
1030 *
1031 * Currently its main purpose is to wire ADNS into the event
1032 * loop.
1033 */
1034
1035 static void before_select(sel_state *s, sel_args *a, void *p)
1036 {
1037 struct timeval now;
1038 adns_query q;
1039 adns_answer *n;
1040 admin_resop *r;
1041 int any = 0;
1042
1043 /* --- Check for name-resolution progress --- *
1044 *
1045 * If there is any, then clobber the timeout: one of the resolver
1046 * callbacks might have renewed its interest in a file descriptor, but too
1047 * late to affect this @select@ call.
1048 *
1049 * I think, strictly, this is an mLib bug, but it's cheap enough to hack
1050 * around here. Fixing it will wait for mLib 3.
1051 */
1052
1053 for (;;) {
1054 q = 0;
1055 if (adns_check(ads, &q, &n, &p)) break;
1056 r = p;
1057 any = 1;
1058 if (n->status != adns_s_ok) {
1059 T( trace(T_ADMIN, "admin: resop %s failed: %s",
1060 BGTAG(r), adns_strerror(n->status)); )
1061 a_bgfail(&r->bg, "resolve-error", "%s", r->addr, A_END);
1062 r->func(r, ARES_FAIL);
1063 } else {
1064 T( trace(T_ADMIN, "admin: resop %s ok", BGTAG(r)); )
1065 assert(n->type == adns_r_addr);
1066 assert(n->nrrs > 0);
1067 assert(n->rrs.addr[0].len <= sizeof(r->sa));
1068 memcpy(&r->sa, &n->rrs.addr[0].addr, n->rrs.addr[0].len);
1069 setport(&r->sa, r->port);
1070 r->func(r, ARES_OK);
1071 }
1072 free(n);
1073 sel_rmtimer(&r->t);
1074 xfree(r->addr);
1075 a_bgrelease(&r->bg);
1076 }
1077
1078 if (any) { a->tvp = &a->tv; a->tv.tv_sec = 0; a->tv.tv_usec = 0; }
1079
1080 gettimeofday(&now, 0);
1081 adns_beforeselect(ads, &a->maxfd,
1082 &a->fd[SEL_READ], &a->fd[SEL_WRITE], &a->fd[SEL_EXC],
1083 &a->tvp, &a->tv, &now);
1084 }
1085
1086 /* --- @after_select@ --- *
1087 *
1088 * Arguments: @sel_state *s@ = the @sel@ multiplexor (unused)
1089 * @sel_args *a@ = input to @select@, to be updated
1090 * @void *p@ = a context pointer (unused)
1091 *
1092 * Returns: ---
1093 *
1094 * Use: An I/O multiplexor hook, called just after waiting for I/O
1095 * events.
1096 *
1097 * Currently its main purpose is to wire ADNS into the event
1098 * loop.
1099 */
1100
1101 static void after_select(sel_state *s, sel_args *a, void *p)
1102 {
1103 struct timeval now;
1104
1105 gettimeofday(&now, 0);
1106 adns_afterselect(ads, a->maxfd,
1107 &a->fd[SEL_READ], &a->fd[SEL_WRITE], &a->fd[SEL_EXC],
1108 &now);
1109 }
1110
1111 #else
1112
1113 /* --- @a_resolved@ --- *
1114 *
1115 * Arguments: @struct hostent *h@ = pointer to resolved hostname
1116 * @void *v@ = pointer to resolver operation
1117 *
1118 * Returns: ---
1119 *
1120 * Use: Handles a completed name resolution.
1121 */
1122
1123 static void a_resolved(struct hostent *h, void *v)
1124 {
1125 admin_resop *r = v;
1126
1127 QUICKRAND;
1128 if (!h) {
1129 T( trace(T_ADMIN, "admin: resop %s failed: %s",
1130 BGTAG(r), hstrerror(h_errno)); )
1131 a_bgfail(&r->bg, "resolve-error", "%s", r->addr, A_END);
1132 r->func(r, ARES_FAIL);
1133 } else {
1134 T( trace(T_ADMIN, "admin: resop %s ok", BGTAG(r)); )
1135 r->sa.sin.sin_family = AF_INET;
1136 memcpy(&r->sa.sin.sin_addr, h->h_addr, sizeof(struct in_addr));
1137 setport(&r->sa, r->port);
1138 r->func(r, ARES_OK);
1139 }
1140 sel_rmtimer(&r->t);
1141 xfree(r->addr);
1142 a_bgrelease(&r->bg);
1143 }
1144
1145 #endif
1146
1147 /* --- @a_restimer@ --- *
1148 *
1149 * Arguments: @struct timeval *tv@ = timer
1150 * @void *v@ = pointer to resolver operation
1151 *
1152 * Returns: ---
1153 *
1154 * Use: Times out a resolver.
1155 */
1156
1157 static void a_restimer(struct timeval *tv, void *v)
1158 {
1159 admin_resop *r = v;
1160
1161 T( trace(T_ADMIN, "admin: resop %s timeout", BGTAG(r)); )
1162 a_bgfail(&r->bg, "resolver-timeout", "%s", r->addr, A_END);
1163 r->func(r, ARES_FAIL);
1164 #ifdef HAVE_LIBADNS
1165 adns_cancel(r->q);
1166 #else
1167 bres_abort(&r->r);
1168 #endif
1169 xfree(r->addr);
1170 a_bgrelease(&r->bg);
1171 }
1172
1173 /* --- @a_rescancel@ --- *
1174 *
1175 * Arguments: @admin_bgop *bg@ = background operation
1176 *
1177 * Returns: ---
1178 *
1179 * Use: Cancels an add operation.
1180 */
1181
1182 static void a_rescancel(admin_bgop *bg)
1183 {
1184 admin_resop *r = (admin_resop *)bg;
1185
1186 T( trace(T_ADMIN, "admin: cancel resop %s", BGTAG(r)); )
1187 r->func(r, ARES_FAIL);
1188 sel_rmtimer(&r->t);
1189 xfree(r->addr);
1190 #ifdef HAVE_LIBADNS
1191 adns_cancel(r->q);
1192 #else
1193 bres_abort(&r->r);
1194 #endif
1195 }
1196
1197 /* --- @a_resolve@ --- *
1198 *
1199 * Arguments: @admin *a@ = administration connection
1200 * @admin_resop *r@ = resolver operation to run
1201 * @const char *tag@ = background operation tag
1202 * @void (*func)(struct admin_resop *, int@ = handler function
1203 * @unsigned ac@ = number of remaining arguments
1204 * @char *av[]@ = pointer to remaining arguments
1205 *
1206 * Returns: ---
1207 *
1208 * Use: Cranks up a resolver job.
1209 */
1210
1211 static void a_resolve(admin *a, admin_resop *r, const char *tag,
1212 void (*func)(struct admin_resop *, int),
1213 unsigned ac, char *av[])
1214 {
1215 struct timeval tv;
1216 unsigned long pt;
1217 int af = AF_UNSPEC;
1218 const char *fam = "ANY";
1219 char *p;
1220 int i = 0, j;
1221 struct addrinfo *ai, *ailist, aihint = { 0 };
1222 #ifdef HAVE_LIBADNS
1223 int err;
1224 adns_queryflags qf;
1225 #endif
1226
1227 /* --- Fill in the easy bits of address --- */
1228
1229 r->bg.tag = "<starting>";
1230 r->addr = 0;
1231 r->func = func;
1232 if (mystrieq(av[i], "any"))
1233 { fam = "ANY"; af = AF_UNSPEC; i++; }
1234 else for (j = 0; j < NADDRFAM; j++) {
1235 if (mystrieq(av[i], aftab[j].name)) {
1236 assert(udpsock[j].fd >= 0);
1237 fam = aftab[j].name;
1238 af = aftab[j].af;
1239 i++;
1240 break;
1241 }
1242 }
1243 if (ac - i != 1 && ac - i != 2) {
1244 a_fail(a, "bad-addr-syntax", "[FAMILY] ADDRESS [PORT]", A_END);
1245 goto fail;
1246 }
1247 r->addr = xstrdup(av[i]);
1248 if (!av[i + 1])
1249 pt = TRIPE_PORT;
1250 else {
1251 pt = strtoul(av[i + 1], &p, 0);
1252 if (*p) {
1253 struct servent *s = getservbyname(av[i + 1], "udp");
1254 if (!s) {
1255 a_fail(a, "unknown-service", "%s", av[i + 1], A_END);
1256 goto fail;
1257 }
1258 pt = ntohs(s->s_port);
1259 }
1260 }
1261 if (pt == 0 || pt >= 65536) {
1262 a_fail(a, "invalid-port", "%lu", pt, A_END);
1263 goto fail;
1264 }
1265 r->port = pt;
1266
1267 /* --- Report backgrounding --- *
1268 *
1269 * Do this for consistency of interface, even if we're going to get the
1270 * answer straight away.
1271 */
1272
1273 if (a_bgadd(a, &r->bg, tag, a_rescancel))
1274 goto fail;
1275 T( trace(T_ADMIN, "admin: %u, resop %s, hostname `%s', family `%s'",
1276 a->seq, BGTAG(r), r->addr, fam); )
1277
1278 /* --- Make sure the address family is something we can implement --- */
1279
1280 if (af != AF_UNSPEC && af != AF_INET) {
1281 T( trace(T_ADMIN, "admin: resop %s failed: unsupported address family",
1282 BGTAG(r)); )
1283 a_bgfail(&r->bg, "resolve-error", "%s", r->addr, A_END);
1284 goto fail_release;
1285 }
1286 assert(udpsock[AFIX_INET].fd >= 0);
1287
1288 /* --- If the name is numeric, do it the easy way --- */
1289
1290 aihint.ai_family = AF_INET;
1291 aihint.ai_socktype = SOCK_DGRAM;
1292 aihint.ai_protocol = IPPROTO_UDP;
1293 aihint.ai_flags = AI_NUMERICHOST;
1294 if (!getaddrinfo(av[i], 0, &aihint, &ailist)) {
1295 for (ai = ailist; ai; ai = ai->ai_next) {
1296 if ((j = afix(ai->ai_family)) >= 0 && udpsock[j].fd >= 0)
1297 break;
1298 }
1299 if (!ai) {
1300 T( trace(T_ADMIN, "admin: resop %s failed: "
1301 "no suitable addresses returned", BGTAG(r)); )
1302 a_bgfail(&r->bg, "resolve-error", "%s" , r->addr, A_END);
1303 func(r, ARES_FAIL);
1304 } else {
1305 T( trace(T_ADMIN, "admin: resop %s done the easy way", BGTAG(r)); )
1306 assert(ai->ai_addrlen <= sizeof(r->sa));
1307 memcpy(&r->sa, ai->ai_addr, ai->ai_addrlen);
1308 setport(&r->sa, r->port);
1309 func(r, ARES_OK);
1310 }
1311 freeaddrinfo(ailist);
1312 xfree(r->addr);
1313 a_bgrelease(&r->bg);
1314 return;
1315 }
1316
1317 /* --- Store everything for later and crank up the resolver --- */
1318
1319 gettimeofday(&tv, 0);
1320 tv.tv_sec += T_RESOLVE;
1321 sel_addtimer(&sel, &r->t, &tv, a_restimer, r);
1322 #ifdef HAVE_LIBADNS
1323 qf = adns_qf_search | adns_qf_want_ipv4;
1324 if ((err = adns_submit(ads, r->addr, adns_r_addr, qf, r, &r->q)) != 0) {
1325 T( trace(T_ADMIN, "admin: resop %s adns_submit failed: %s",
1326 BGTAG(r), strerror(err)); )
1327 a_bgfail(&r->bg, "resolve-error", "%s", r->addr, A_END);
1328 goto fail_release;
1329 }
1330 #else
1331 bres_byname(&r->r, r->addr, a_resolved, r);
1332 #endif
1333 return;
1334
1335 fail:
1336 func(r, ARES_FAIL);
1337 if (r->addr) xfree(r->addr);
1338 xfree(r);
1339 return;
1340
1341 fail_release:
1342 func(r, ARES_FAIL);
1343 xfree(r->addr);
1344 a_bgrelease(&r->bg);
1345 }
1346
1347 /*----- Option parsing ----------------------------------------------------*/
1348
1349 #define OPTIONS(argc, argv, guts) do { \
1350 char **o_av = argv; \
1351 for (;; o_av++) { \
1352 if (!*o_av) \
1353 break; \
1354 if (mystrieq(*o_av, "--")) { \
1355 o_av++; \
1356 break; \
1357 } \
1358 guts \
1359 if (**o_av == '-') \
1360 goto bad_syntax; \
1361 break; \
1362 } \
1363 argc -= o_av - argv; \
1364 argv = o_av; \
1365 } while (0)
1366
1367 #define OPT(name, guts) if (mystrieq(*o_av, name)) { guts continue; }
1368
1369 #define OPTARG(name, arg, guts) OPT(name, { \
1370 const char *arg; \
1371 arg = *++o_av; \
1372 if (!arg) goto bad_syntax; \
1373 guts \
1374 })
1375
1376 #define OPTTIME(name, arg, guts) OPTARG(name, o_arg, { \
1377 long arg; \
1378 if ((arg = a_parsetime(o_arg)) < 0) { \
1379 a_fail(a, "bad-time-spec", "%s", o_arg, A_END); \
1380 goto fail; \
1381 } \
1382 guts \
1383 })
1384
1385 /*----- Adding peers ------------------------------------------------------*/
1386
1387 /* --- @a_doadd@ --- *
1388 *
1389 * Arguments: @admin_resop *r@ = resolver operation
1390 * @int rc@ = how it worked
1391 *
1392 * Returns: ---
1393 *
1394 * Use: Handles a completed resolution.
1395 */
1396
1397 static void a_doadd(admin_resop *r, int rc)
1398 {
1399 admin_addop *add = (admin_addop *)r;
1400
1401 T( trace(T_ADMIN, "admin: done add op %s", BGTAG(add)); )
1402
1403 if (rc == ARES_OK) {
1404 add->peer.sa = add->r.sa;
1405 if (p_findbyaddr(&add->r.sa))
1406 a_bgfail(&add->r.bg, "peer-addr-exists", "?ADDR", &add->r.sa, A_END);
1407 else if (p_find(add->peer.name))
1408 a_bgfail(&add->r.bg, "peer-exists", "%s", add->peer.name, A_END);
1409 else if (!p_create(&add->peer))
1410 a_bgfail(&add->r.bg, "peer-create-fail", "%s", add->peer.name, A_END);
1411 else
1412 a_bgok(&add->r.bg);
1413 }
1414
1415 if (add->peer.tag) xfree(add->peer.tag);
1416 if (add->peer.privtag) xfree(add->peer.privtag);
1417 xfree(add->peer.name);
1418 }
1419
1420 /* --- @acmd_add@ --- *
1421 *
1422 * Arguments: @admin *a@ = connection which requested the addition
1423 * @unsigned ac@ = argument count
1424 * @char *av[]@ = pointer to the argument list
1425 *
1426 * Returns: ---
1427 *
1428 * Use: Adds a new peer.
1429 */
1430
1431 static void acmd_add(admin *a, unsigned ac, char *av[])
1432 {
1433 const char *tag = 0;
1434 admin_addop *add;
1435
1436 /* --- Set stuff up --- */
1437
1438 add = xmalloc(sizeof(*add));
1439 add->peer.name = 0;
1440 add->peer.tag = 0;
1441 add->peer.privtag = 0;
1442 add->peer.t_ka = 0;
1443 add->peer.tops = tun_default;
1444 add->peer.f = 0;
1445
1446 /* --- Parse options --- */
1447
1448 OPTIONS(ac, av, {
1449 OPTARG("-background", arg, { tag = arg; })
1450 OPTARG("-tunnel", arg, {
1451 unsigned i;
1452 for (i = 0;; i++) {
1453 if (!tunnels[i]) {
1454 a_fail(a, "unknown-tunnel", "%s", arg, A_END);
1455 goto fail;
1456 }
1457 if (mystrieq(arg, tunnels[i]->name)) {
1458 add->peer.tops = tunnels[i];
1459 break;
1460 }
1461 }
1462 })
1463 OPTTIME("-keepalive", t, { add->peer.t_ka = t; })
1464 OPT("-cork", { add->peer.f |= KXF_CORK; })
1465 OPTARG("-key", arg, {
1466 if (add->peer.tag) xfree(add->peer.tag);
1467 add->peer.tag = xstrdup(arg);
1468 })
1469 OPT("-mobile", { add->peer.f |= PSF_MOBILE; })
1470 OPTARG("-priv", arg, {
1471 if (add->peer.privtag) xfree(add->peer.privtag);
1472 add->peer.privtag = xstrdup(arg);
1473 })
1474 });
1475
1476 /* --- Make sure someone's not got there already --- */
1477
1478 if (!av[0] || !av[1])
1479 goto bad_syntax;
1480 if (p_find(*av)) {
1481 a_fail(a, "peer-exists", "%s", *av, A_END);
1482 goto fail;
1483 }
1484 add->peer.name = xstrdup(*av++);
1485 ac--;
1486
1487 /* --- Crank up the resolver --- */
1488
1489 a_resolve(a, &add->r, tag, a_doadd, ac, av);
1490 return;
1491
1492 /* --- Clearing up --- */
1493
1494 bad_syntax:
1495 a_fail(a, "bad-syntax", "add", "[OPTIONS] PEER ADDR ...", A_END);
1496 fail:
1497 if (add->peer.name) xfree(add->peer.name);
1498 if (add->peer.tag) xfree(add->peer.tag);
1499 if (add->peer.privtag) xfree(add->peer.privtag);
1500 xfree(add);
1501 return;
1502 }
1503
1504 /*----- Ping --------------------------------------------------------------*/
1505
1506 /* --- @a_pingcancel@ --- *
1507 *
1508 * Arguments: @admin_bgop *bg@ = background operation block
1509 *
1510 * Returns: ---
1511 *
1512 * Use: Cancels a running ping.
1513 */
1514
1515 static void a_pingcancel(admin_bgop *bg)
1516 {
1517 admin_pingop *pg = (admin_pingop *)bg;
1518 T( trace(T_ADMIN, "admin: cancel ping op %s", BGTAG(pg)); )
1519 p_pingdone(&pg->ping, PING_NONOTIFY);
1520 }
1521
1522 /* --- @a_pong@ --- *
1523 *
1524 * Arguments: @int rc@ = return code
1525 * @void *v@ = ping operation block
1526 *
1527 * Returns: ---
1528 *
1529 * Use: Collects what happened to a ping message.
1530 */
1531
1532 static void a_pong(int rc, void *v)
1533 {
1534 admin_pingop *pg = v;
1535 struct timeval tv;
1536 double millis;
1537
1538 switch (rc) {
1539 case PING_OK:
1540 gettimeofday(&tv, 0);
1541 tv_sub(&tv, &tv, &pg->pingtime);
1542 millis = (double)tv.tv_sec * 1000 + (double)tv.tv_usec/1000;
1543 a_bginfo(&pg->bg, "ping-ok", "%.1f", millis, A_END);
1544 a_bgok(&pg->bg);
1545 break;
1546 case PING_TIMEOUT:
1547 a_bginfo(&pg->bg, "ping-timeout", A_END);
1548 a_bgok(&pg->bg);
1549 break;
1550 case PING_PEERDIED:
1551 a_bginfo(&pg->bg, "ping-peer-died", A_END);
1552 a_bgok(&pg->bg);
1553 break;
1554 default:
1555 abort();
1556 }
1557 T( trace(T_ADMIN, "admin: ponged ping op %s", BGTAG(pg)); )
1558 a_bgrelease(&pg->bg);
1559 }
1560
1561 /* --- @acmd_ping@, @acmd_eping@ --- *
1562 *
1563 * Arguments: @admin *a@ = connection which requested the ping
1564 * @unsigned ac@ = argument count
1565 * @char *av[]@ = pointer to the argument list
1566 *
1567 * Returns: ---
1568 *
1569 * Use: Pings a peer.
1570 */
1571
1572 static void a_ping(admin *a, unsigned ac, char *av[],
1573 const char *cmd, unsigned msg)
1574 {
1575 long t = T_PING;
1576 peer *p;
1577 admin_pingop *pg = 0;
1578 const char *tag = 0;
1579
1580 OPTIONS(ac, av, {
1581 OPTARG("-background", arg, { tag = arg; })
1582 OPTTIME("-timeout", arg, { t = arg; })
1583 });
1584 if (!*av || av[1]) goto bad_syntax;
1585 if ((p = a_findpeer(a, *av)) == 0)
1586 return;
1587 pg = xmalloc(sizeof(*pg));
1588 gettimeofday(&pg->pingtime, 0);
1589 if (a_bgadd(a, &pg->bg, tag, a_pingcancel))
1590 goto fail;
1591 T( trace(T_ADMIN, "admin: ping op %s: %s to %s",
1592 BGTAG(pg), cmd, p_name(p)); )
1593 if (p_pingsend(p, &pg->ping, msg, t, a_pong, pg)) {
1594 a_bgfail(&pg->bg, "ping-send-failed", A_END);
1595 a_bgrelease(&pg->bg);
1596 }
1597 return;
1598
1599 bad_syntax:
1600 a_fail(a, "bad-syntax", "%s", cmd, "[OPTIONS] PEER", cmd, A_END);
1601 fail:
1602 if (pg) xfree(pg);
1603 return;
1604 }
1605
1606 static void acmd_ping(admin *a, unsigned ac, char *av[])
1607 { a_ping(a, ac, av, "ping", MISC_PING); }
1608 static void acmd_eping(admin *a, unsigned ac, char *av[])
1609 { a_ping(a, ac, av, "eping", MISC_EPING); }
1610
1611 /*----- Service commands --------------------------------------------------*/
1612
1613 static void acmd_svcclaim(admin *a, unsigned ac, char *av[])
1614 {
1615 admin_service *svc;
1616 unsigned f;
1617
1618 svc = sym_find(&a_svcs, av[0], -1, sizeof(*svc), &f);
1619 if (f) {
1620 if (versioncmp(av[1], svc->version) <= 0) {
1621 a_fail(a,
1622 "service-exists",
1623 "%s", SYM_NAME(svc),
1624 "%s", svc->version,
1625 A_END);
1626 return;
1627 }
1628 a_write(svc->prov, "SVCCLAIM", 0, "%s", av[0], "%s", av[1], A_END);
1629 a_svcunlink(svc);
1630 }
1631 svc->prov = a;
1632 svc->version = xstrdup(av[1]);
1633 svc->next = a->svcs;
1634 svc->prev = 0;
1635 if (a->svcs) a->svcs->prev = svc;
1636 a->svcs = svc;
1637 a_notify("SVCCLAIM", "%s", SYM_NAME(svc), "%s", svc->version, A_END);
1638 a_ok(a);
1639 }
1640
1641 static void acmd_svcrelease(admin *a, unsigned ac, char *av[])
1642 {
1643 admin_service *svc;
1644
1645 if ((svc = a_svcfind(a, av[0])) == 0)
1646 return;
1647 if (svc->prov != a) {
1648 a_fail(a, "not-service-provider", "%s", SYM_NAME(svc), A_END);
1649 return;
1650 }
1651 a_svcrelease(svc);
1652 a_ok(a);
1653 }
1654
1655 static void acmd_svcensure(admin *a, unsigned ac, char *av[])
1656 {
1657 admin_service *svc;
1658
1659 if ((svc = a_svcfind(a, av[0])) == 0)
1660 return;
1661 if (av[1] && versioncmp(svc->version, av[1]) < 0) {
1662 a_fail(a, "service-too-old",
1663 "%s", SYM_NAME(svc),
1664 "%s", svc->version,
1665 A_END);
1666 return;
1667 }
1668 a_ok(a);
1669 }
1670
1671 static void acmd_svcquery(admin *a, unsigned ac, char *av[])
1672 {
1673 admin_service *svc;
1674
1675 if ((svc = a_svcfind(a, av[0])) != 0) {
1676 a_info(a, "name=%s", SYM_NAME(svc), "version=%s", svc->version, A_END);
1677 a_ok(a);
1678 }
1679 }
1680
1681 static void acmd_svclist(admin *a, unsigned ac, char *av[])
1682 {
1683 admin_service *svc;
1684 sym_iter i;
1685
1686 for (sym_mkiter(&i, &a_svcs); (svc = sym_next(&i)) != 0; )
1687 a_info(a, "%s", SYM_NAME(svc), "%s", svc->version, A_END);
1688 a_ok(a);
1689 }
1690
1691 static void a_canceljob(admin_bgop *bg)
1692 {
1693 admin_svcop *svc = (admin_svcop *)bg;
1694
1695 a_write(svc->prov, "SVCCANCEL", 0, "%s", a_jobidencode(svc), A_END);
1696 a_jobdestroy(svc);
1697 }
1698
1699 static void acmd_svcsubmit(admin *a, unsigned ac, char *av[])
1700 {
1701 const char *tag = 0;
1702 admin_service *svc;
1703 admin_svcop *svcop;
1704 const char *ver = 0;
1705 dstr d = DSTR_INIT;
1706
1707 OPTIONS(ac, av, {
1708 OPTARG("-background", arg, { tag = arg; })
1709 OPTARG("-version", arg, { ver = arg; })
1710 });
1711 if (!*av) goto bad_syntax;
1712 if ((svc = a_svcfind(a, *av)) == 0) goto fail;
1713 if (ver && versioncmp(svc->version, ver) < 0) {
1714 a_fail(a, "service-too-old",
1715 "%s", SYM_NAME(svc),
1716 "%s", svc->version,
1717 A_END);
1718 goto fail;
1719 }
1720 if ((svcop = a_jobcreate(svc->prov)) == 0) {
1721 a_fail(a, "provider-overloaded", A_END);
1722 goto fail;
1723 }
1724 if (a_bgadd(a, &svcop->bg, tag, a_canceljob)) {
1725 a_jobdestroy(svcop);
1726 goto fail;
1727 }
1728 a_write(svc->prov, "SVCJOB", 0,
1729 "%s", a_jobidencode(svcop),
1730 "?TOKENS", av,
1731 A_END);
1732 goto done;
1733
1734 bad_syntax:
1735 a_fail(a, "bad-syntax", "svcsubmit", "[OPTIONS] SERVICE ARGS...", A_END);
1736 fail:
1737 done:
1738 dstr_destroy(&d);
1739 return;
1740 }
1741
1742 static void a_replycmd(admin *a, const char *status, int donep, char *av[])
1743 {
1744 admin_svcop *svc;
1745
1746 if ((svc = a_jobiddecode(&a->j, av[0])) == 0) {
1747 a_fail(a, "unknown-jobid", av[0], A_END);
1748 return;
1749 }
1750 a_write(svc->bg.a, status, svc->bg.tag, "?TOKENS", av + 1, A_END);
1751 if (donep) {
1752 a_jobdestroy(svc);
1753 a_bgrelease(&svc->bg);
1754 }
1755 a_ok(a);
1756 }
1757
1758 static void acmd_svcok(admin *a, unsigned ac, char *av[])
1759 { a_replycmd(a, "OK", 1, av); }
1760 static void acmd_svcinfo(admin *a, unsigned ac, char *av[])
1761 { a_replycmd(a, "INFO", 0, av); }
1762 static void acmd_svcfail(admin *a, unsigned ac, char *av[])
1763 { a_replycmd(a, "FAIL", 1, av); }
1764
1765 /*----- Administration commands -------------------------------------------*/
1766
1767 /* --- Miscellaneous commands --- */
1768
1769 /* --- @traceish@ --- *
1770 *
1771 * Arguments: @admin *a@ = connection to complain on
1772 * @unsigned ac@ = number of arguments
1773 * @char *av[]@ = vector of arguments
1774 * @const char *what@ = what we're messing with
1775 * @const trace_opt *tt@ = options table
1776 * @unsigned *ff@ = where the flags are
1777 *
1778 * Returns: Nonzero if anything changed.
1779 *
1780 * Use: Guts of trace-ish commands like `trace' and `watch'.
1781 */
1782
1783 static int traceish(admin *a, unsigned ac, char *av[],
1784 const char *what, const trace_opt *tt, unsigned *ff)
1785 {
1786 int ch = 0;
1787
1788 if (!ac || strcmp(av[0], "?") == 0) {
1789 const trace_opt *t;
1790 for (t = tt; t->ch; t++) {
1791 a_info(a, "*%c%c %s",
1792 t->ch, (*ff & t->f) == t->f ? '+' : ' ', t->help, A_END);
1793 }
1794 } else {
1795 unsigned sense = 1;
1796 unsigned f = *ff;
1797 const trace_opt *t;
1798 char *p = av[0];
1799
1800 while (*p) {
1801 switch (*p) {
1802 case '+': sense = 1; break;
1803 case '-': sense = 0; break;
1804 default:
1805 for (t = tt; t->ch; t++) {
1806 if (t->ch == *p) {
1807 if (sense) f |= t->f;
1808 else f &= ~t->f;
1809 goto tropt_ok;
1810 }
1811 }
1812 a_fail(a, "bad-%s-option", what, "%c", *p, A_END);
1813 return (0);
1814 tropt_ok:;
1815 break;
1816 }
1817 p++;
1818 }
1819 *ff = f;
1820 ch = 1;
1821 }
1822 a_ok(a);
1823 return (ch);
1824 }
1825
1826 #ifndef NTRACE
1827
1828 static void acmd_trace(admin *a, unsigned ac, char *av[])
1829 {
1830 if (traceish(a, ac, av, "trace", tr_opts, &tr_flags))
1831 trace_level(tr_flags);
1832 }
1833
1834 #endif
1835
1836 static void acmd_watch(admin *a, unsigned ac, char *av[])
1837 { traceish(a, ac, av, "watch", w_opts, &a->f); }
1838
1839 static void alertcmd(admin *a, unsigned f_and, unsigned f_eq,
1840 const char *status, char *av[])
1841 { a_alert(f_and, f_eq, status, "USER", "?TOKENS", av, A_END); a_ok(a); }
1842 static void acmd_notify(admin *a, unsigned ac, char *av[])
1843 { alertcmd(a, AF_NOTE, AF_NOTE, "NOTE", av); }
1844 static void acmd_warn(admin *a, unsigned ac, char *av[])
1845 { alertcmd(a, AF_WARN, AF_WARN, "WARN", av); }
1846
1847 static void acmd_port(admin *a, unsigned ac, char *av[])
1848 {
1849 int i;
1850
1851 if (ac) {
1852 for (i = 0; i < NADDRFAM; i++)
1853 if (mystrieq(av[0], aftab[i].name)) goto found;
1854 a_fail(a, "unknown-address-family", "%s", av[0], A_END);
1855 return;
1856 found:
1857 if (udpsock[i].fd < 0) {
1858 a_fail(a, "disabled-address-family", "%s", aftab[i].name, A_END);
1859 return;
1860 }
1861 } else {
1862 for (i = 0; i < NADDRFAM; i++)
1863 if (udpsock[i].fd >= 0) goto found;
1864 abort();
1865 }
1866 a_info(a, "%u", p_port(i), A_END);
1867 a_ok(a);
1868 }
1869
1870 static void acmd_daemon(admin *a, unsigned ac, char *av[])
1871 {
1872 if (flags & F_DAEMON)
1873 a_fail(a, "already-daemon", A_END);
1874 else {
1875 a_notify("DAEMON", A_END);
1876 if (a_stdin)
1877 a_destroy(a_stdin);
1878 if (daemonize())
1879 a_fail(a, "daemon-error", "?ERRNO", A_END);
1880 else {
1881 flags |= F_DAEMON;
1882 a_ok(a);
1883 }
1884 }
1885 }
1886
1887 static void acmd_jobs(admin *a, unsigned ac, char *av[])
1888 {
1889 admin_bgop *bg;
1890
1891 for (bg = a->bg; bg; bg = bg->next) {
1892 assert(bg->tag);
1893 a_info(a, "%s", bg->tag, A_END);
1894 }
1895 a_ok(a);
1896 }
1897
1898 static void acmd_bgcancel(admin *a, unsigned ac, char *av[])
1899 {
1900 admin_bgop *bg;
1901
1902 if ((bg = a_bgfind(a, av[0])) == 0)
1903 a_fail(a, "unknown-tag", "%s", av[0], A_END);
1904 else {
1905 bg->cancel(bg);
1906 a_bgrelease(bg);
1907 a_ok(a);
1908 }
1909 }
1910
1911 static void acmd_algs(admin *a, unsigned ac, char *av[])
1912 {
1913 peer *p;
1914 const kdata *kd;
1915 const dhgrp *g;
1916 const algswitch *algs;
1917
1918 if (!ac)
1919 kd = master;
1920 else {
1921 if ((p = a_findpeer(a, av[0])) == 0) return;
1922 kd = p->kx.kpriv;
1923 }
1924 g = kd->grp;
1925 algs = &kd->algs;
1926
1927 g->ops->grpinfo(g, a);
1928 a_info(a,
1929 "hash=%s", algs->h->name,
1930 "mgf=%s", algs->mgf->name,
1931 "hash-sz=%lu", (unsigned long)algs->h->hashsz,
1932 A_END);
1933 a_info(a,
1934 "bulk-transform=%s", algs->bulk->ops->name,
1935 "bulk-overhead=%lu",
1936 (unsigned long)algs->bulk->ops->overhead(algs->bulk),
1937 A_END);
1938 algs->bulk->ops->alginfo(algs->bulk, a);
1939 a_info(a,
1940 "cipher-data-limit=%lu",
1941 (unsigned long)algs->bulk->ops->expsz(algs->bulk),
1942 A_END);
1943 a_ok(a);
1944 }
1945
1946 static void acmd_list(admin *a, unsigned ac, char *av[])
1947 {
1948 FOREACH_PEER(p, { a_info(a, "%s", p_name(p), A_END); });
1949 a_ok(a);
1950 }
1951
1952 static void acmd_ifname(admin *a, unsigned ac, char *av[])
1953 {
1954 peer *p;
1955
1956 if ((p = a_findpeer(a, av[0])) != 0) {
1957 a_info(a, "%s", p_ifname(p), A_END);
1958 a_ok(a);
1959 }
1960 }
1961
1962 static void acmd_setifname(admin *a, unsigned ac, char *av[])
1963 {
1964 peer *p;
1965
1966 if ((p = a_findpeer(a, av[0])) != 0) {
1967 a_notify("NEWIFNAME", "?PEER", p, "%s", p_ifname(p), "%s", av[1], A_END);
1968 p_setifname(p, av[1]);
1969 a_ok(a);
1970 }
1971 }
1972
1973 static void acmd_getchal(admin *a, unsigned ac, char *av[])
1974 {
1975 buf b;
1976
1977 buf_init(&b, buf_i, PKBUFSZ);
1978 c_new(&b);
1979 a_info(a, "?B64", BBASE(&b), (size_t)BLEN(&b), A_END);
1980 a_ok(a);
1981 }
1982
1983 static void acmd_checkchal(admin *a, unsigned ac, char *av[])
1984 {
1985 codec *b64 = base64_class.decoder(CDCF_NOEQPAD);
1986 int err;
1987 buf b;
1988 dstr d = DSTR_INIT;
1989
1990 if ((err = b64->ops->code(b64, av[0], strlen(av[0]), &d)) != 0 ||
1991 (err = b64->ops->code(b64, 0, 0, &d)) != 0)
1992 a_fail(a, "bad-base64", "%s", codec_strerror(err), A_END);
1993 else {
1994 buf_init(&b, d.buf, d.len);
1995 if (c_check(&b) || BBAD(&b) || BLEFT(&b))
1996 a_fail(a, "invalid-challenge", A_END);
1997 else
1998 a_ok(a);
1999 }
2000 b64->ops->destroy(b64);
2001 dstr_destroy(&d);
2002 }
2003
2004 static void acmd_greet(admin *a, unsigned ac, char *av[])
2005 {
2006 peer *p;
2007 int err;
2008 codec *b64;
2009 dstr d = DSTR_INIT;
2010
2011 if ((p = a_findpeer(a, av[0])) == 0) return;
2012 b64 = base64_class.decoder(CDCF_NOEQPAD);
2013 if ((err = b64->ops->code(b64, av[1], strlen(av[1]), &d)) != 0 ||
2014 (err = b64->ops->code(b64, 0, 0, &d)) != 0)
2015 a_fail(a, "bad-base64", "%s", codec_strerror(err), A_END);
2016 else {
2017 p_greet(p, d.buf, d.len);
2018 a_ok(a);
2019 }
2020 b64->ops->destroy(b64);
2021 dstr_destroy(&d);
2022 }
2023
2024 static void acmd_addr(admin *a, unsigned ac, char *av[])
2025 {
2026 peer *p;
2027 const addr *ad;
2028
2029 if ((p = a_findpeer(a, av[0])) != 0) {
2030 ad = p_addr(p);
2031 a_info(a, "?ADDR", ad, A_END);
2032 a_ok(a);
2033 }
2034 }
2035
2036 static void acmd_peerinfo(admin *a, unsigned ac, char *av[])
2037 {
2038 peer *p;
2039 const peerspec *ps;
2040 const char *ptag;
2041
2042 if ((p = a_findpeer(a, av[0])) != 0) {
2043 ps = p_spec(p);
2044 a_info(a, "tunnel=%s", ps->tops->name, A_END);
2045 a_info(a, "key=%s", p_tag(p),
2046 "current-key=%s", p->kx.kpub->tag, A_END);
2047 if ((ptag = p_privtag(p)) == 0) ptag = "(default)";
2048 a_info(a, "private-key=%s", ptag,
2049 "current-private-key=%s", p->kx.kpriv->tag, A_END);
2050 a_info(a, "keepalive=%lu", ps->t_ka, A_END);
2051 a_info(a, "corked=%s", BOOL(p->kx.f&KXF_CORK),
2052 "mobile=%s", BOOL(ps->f&PSF_MOBILE),
2053 A_END);
2054 a_ok(a);
2055 }
2056 }
2057
2058 static void acmd_servinfo(admin *a, unsigned ac, char *av[])
2059 {
2060 a_info(a, "implementation=edgeware-tripe", A_END);
2061 a_info(a, "version=%s", VERSION, A_END);
2062 a_info(a, "daemon=%s", BOOL(flags & F_DAEMON), A_END);
2063 a_ok(a);
2064 }
2065
2066 static void acmd_stats(admin *a, unsigned ac, char *av[])
2067 {
2068 peer *p;
2069 stats *st;
2070
2071 if ((p = a_findpeer(a, av[0])) == 0)
2072 return;
2073
2074 st = p_stats(p);
2075 a_info(a, "start-time=%s", timestr(st->t_start), A_END);
2076 a_info(a, "last-packet-time=%s", timestr(st->t_last), A_END);
2077 a_info(a, "last-keyexch-time=%s", timestr(st->t_kx), A_END);
2078 a_info(a, "packets-in=%lu", st->n_in, "bytes-in=%lu", st->sz_in, A_END);
2079 a_info(a,
2080 "packets-out=%lu", st->n_out,
2081 "bytes-out=%lu", st->sz_out,
2082 A_END);
2083 a_info(a,
2084 "keyexch-packets-in=%lu", st->n_kxin,
2085 "keyexch-bytes-in=%lu", st->sz_kxin,
2086 A_END);
2087 a_info(a,
2088 "keyexch-packets-out=%lu", st->n_kxout,
2089 "keyexch-bytes-out=%lu", st->sz_kxout,
2090 A_END);
2091 a_info(a,
2092 "ip-packets-in=%lu", st->n_ipin,
2093 "ip-bytes-in=%lu", st->sz_ipin,
2094 A_END);
2095 a_info(a,
2096 "ip-packets-out=%lu", st->n_ipout,
2097 "ip-bytes-out=%lu", st->sz_ipout,
2098 A_END);
2099 a_info(a, "rejected-packets=%lu", st->n_reject, A_END);
2100 a_ok(a);
2101 }
2102
2103 static void acmd_kill(admin *a, unsigned ac, char *av[])
2104 {
2105 peer *p;
2106
2107 if ((p = a_findpeer(a, av[0])) != 0) {
2108 p_destroy(p);
2109 a_ok(a);
2110 }
2111 }
2112
2113 static void acmd_forcekx(admin *a, unsigned ac, char *av[])
2114 {
2115 peer *p;
2116
2117 if ((p = a_findpeer(a, av[0])) != 0) {
2118 kx_start(&p->kx, 1);
2119 a_ok(a);
2120 }
2121 }
2122
2123 static void acmd_reload(admin *a, unsigned ac, char *av[])
2124 { p_keyreload(); a_ok(a); }
2125
2126 static void acmd_quit(admin *a, unsigned ac, char *av[])
2127 {
2128 a_warn("SERVER", "quit", "admin-request", A_END);
2129 a_ok(a);
2130 a_quit();
2131 }
2132
2133 static void acmd_version(admin *a, unsigned ac, char *av[])
2134 {
2135 a_info(a, "%s", PACKAGE, "%s", VERSION, A_END);
2136 a_ok(a);
2137 }
2138
2139 static void acmd_tunnels(admin *a, unsigned ac, char *av[])
2140 {
2141 int i;
2142
2143 for (i = 0; tunnels[i]; i++)
2144 a_info(a, "%s", tunnels[i]->name, A_END);
2145 a_ok(a);
2146 }
2147
2148 /* --- The command table and help --- */
2149
2150 typedef struct acmd {
2151 const char *name;
2152 const char *help;
2153 unsigned argmin, argmax;
2154 void (*func)(admin */*a*/, unsigned /*ac*/, char */*av*/[]);
2155 } acmd;
2156
2157 static void acmd_help(admin */*a*/, unsigned /*ac*/, char */*av*/[]);
2158
2159 static const acmd acmdtab[] = {
2160 { "add", "[OPTIONS] PEER ADDR ...", 2, 0xffff, acmd_add },
2161 { "addr", "PEER", 1, 1, acmd_addr },
2162 { "algs", "[PEER]", 0, 1, acmd_algs },
2163 { "bgcancel", "TAG", 1, 1, acmd_bgcancel },
2164 { "checkchal", "CHAL", 1, 1, acmd_checkchal },
2165 { "daemon", 0, 0, 0, acmd_daemon },
2166 { "eping", "[OPTIONS] PEER", 1, 0xffff, acmd_eping },
2167 { "forcekx", "PEER", 1, 1, acmd_forcekx },
2168 { "getchal", 0, 0, 0, acmd_getchal },
2169 { "greet", "PEER CHAL", 2, 2, acmd_greet },
2170 { "help", 0, 0, 0, acmd_help },
2171 { "ifname", "PEER", 1, 1, acmd_ifname },
2172 { "jobs", 0, 0, 0, acmd_jobs },
2173 { "kill", "PEER", 1, 1, acmd_kill },
2174 { "list", 0, 0, 0, acmd_list },
2175 { "notify", "MESSAGE ...", 1, 0xffff, acmd_notify },
2176 { "peerinfo", "PEER", 1, 1, acmd_peerinfo },
2177 { "ping", "[OPTIONS] PEER", 1, 0xffff, acmd_ping },
2178 { "port", "[FAMILY]", 0, 1, acmd_port },
2179 { "quit", 0, 0, 0, acmd_quit },
2180 { "reload", 0, 0, 0, acmd_reload },
2181 { "servinfo", 0, 0, 0, acmd_servinfo },
2182 { "setifname", "PEER NEW-NAME", 2, 2, acmd_setifname },
2183 { "stats", "PEER", 1, 1, acmd_stats },
2184 { "svcclaim", "SERVICE VERSION", 2, 2, acmd_svcclaim },
2185 { "svcensure", "SERVICE [VERSION]", 1, 2, acmd_svcensure },
2186 { "svcfail", "JOBID TOKENS...", 1, 0xffff, acmd_svcfail },
2187 { "svcinfo", "JOBID TOKENS...", 1, 0xffff, acmd_svcinfo },
2188 { "svclist", 0, 0, 0, acmd_svclist },
2189 { "svcok", "JOBID", 1, 1, acmd_svcok },
2190 { "svcquery", "SERVICE", 1, 1, acmd_svcquery },
2191 { "svcrelease", "SERVICE", 1, 1, acmd_svcrelease },
2192 { "svcsubmit", "[OPTIONS] SERVICE TOKENS...",
2193 2, 0xffff, acmd_svcsubmit },
2194 #ifndef NTRACE
2195 { "trace", "[OPTIONS]", 0, 1, acmd_trace },
2196 #endif
2197 { "tunnels", 0, 0, 0, acmd_tunnels },
2198 { "version", 0, 0, 0, acmd_version },
2199 { "warn", "MESSAGE ...", 1, 0xffff, acmd_warn },
2200 { "watch", "[OPTIONS]", 0, 1, acmd_watch },
2201 { 0, 0, 0, 0, 0 }
2202 };
2203
2204 static void acmd_help(admin *a, unsigned ac, char *av[])
2205 {
2206 const acmd *c;
2207
2208 for (c = acmdtab; c->name; c++) {
2209 if (c->help)
2210 a_info(a, "%s", c->name, "*%s", c->help, A_END);
2211 else
2212 a_info(a, "%s", c->name, A_END);
2213 }
2214 a_ok(a);
2215 }
2216
2217 /*----- Connection handling -----------------------------------------------*/
2218
2219 /* --- @a_destroypending@ --- *
2220 *
2221 * Arguments: ---
2222 *
2223 * Returns: ---
2224 *
2225 * Use: Destroys pending admin connections at a safe time.
2226 */
2227
2228 static void a_destroypending(void)
2229 {
2230 admin *a, *aa, *head;
2231 admin_bgop *bg, *bbg;
2232 admin_service *svc, *ssvc;
2233
2234 /* --- Destroy connections marked as pending --- *
2235 *
2236 * Slightly messy. Killing clients may cause others to finally die. Make
2237 * sure that they can be put on the list without clobbering anything or
2238 * getting lost.
2239 */
2240
2241 while (a_dead) {
2242 head = a_dead;
2243 a_dead = 0;
2244 for (a = head; a; a = aa) {
2245 aa = a->next;
2246 assert(a->f & AF_DEAD);
2247
2248 /* --- Report what we're doing --- */
2249
2250 T( trace(T_ADMIN, "admin: completing destruction of connection %u",
2251 a->seq); )
2252
2253 /* --- If this is the foreground client then shut down --- */
2254
2255 if (a->f & AF_FOREGROUND) {
2256 T( trace(T_ADMIN, "admin: foreground client quit: shutting down"); )
2257 a_warn("SERVER", "quit", "foreground-eof", A_END);
2258 a_quit();
2259 }
2260
2261 /* --- Abort any background jobs in progress --- */
2262
2263 for (bg = a->bg; bg; bg = bbg) {
2264 bbg = bg->next;
2265 bg->cancel(bg);
2266 if (bg->tag) xfree(bg->tag);
2267 xfree(bg);
2268 }
2269
2270 /* --- Release services I hold, and abort pending jobs --- */
2271
2272 for (svc = a->svcs; svc; svc = ssvc) {
2273 ssvc = svc->next;
2274 a_svcrelease(svc);
2275 }
2276 a_jobtablefinal(&a->j);
2277
2278 /* --- Close file descriptors and selectory --- */
2279
2280 selbuf_destroy(&a->b);
2281 if (a->b.reader.fd != a->w.fd) close(a->b.reader.fd);
2282 close(a->w.fd);
2283 if (a_stdin == a) a_stdin = 0;
2284
2285 /* --- Done --- */
2286
2287 DESTROY(a);
2288 }
2289 }
2290 }
2291
2292 /* --- @a_destroy@ --- *
2293 *
2294 * Arguments: @admin *a@ = pointer to an admin block
2295 *
2296 * Returns: ---
2297 *
2298 * Use: Destroys an admin block. This requires a certain amount of
2299 * care.
2300 */
2301
2302 static void freequeue(oqueue *q)
2303 {
2304 obuf *o, *oo;
2305
2306 for (o = q->hd; o; o = oo) {
2307 oo = o->next;
2308 xfree(o);
2309 }
2310 q->hd = q->tl = 0;
2311 }
2312
2313 static void a_destroy(admin *a)
2314 {
2315 if (a->f & AF_DEAD)
2316 return;
2317
2318 if (a->next) a->next->prev = a->prev;
2319 if (a->prev) a->prev->next = a->next;
2320 else admins = a->next;
2321
2322 if (a->out.hd) sel_rmfile(&a->w);
2323 freequeue(&a->out);
2324
2325 a->f |= AF_DEAD;
2326 a->next = a_dead;
2327 a_dead = a;
2328
2329 T( trace(T_ADMIN, "admin: killing connection %u", a->seq); )
2330 }
2331
2332 /* --- @a_line@ --- *
2333 *
2334 * Arguments: @char *p@ = pointer to the line read
2335 * @size_t len@ = length of the line
2336 * @void *vp@ = pointer to my admin block
2337 *
2338 * Returns: ---
2339 *
2340 * Use: Handles a line of input.
2341 */
2342
2343 static void a_line(char *p, size_t len, void *vp)
2344 {
2345 admin *a = vp;
2346 const acmd *c;
2347 char *av[16 + 1];
2348 size_t ac;
2349
2350 QUICKRAND;
2351 if (a->f & AF_DEAD)
2352 return;
2353 if (!p) {
2354 if (!a->bg)
2355 a_destroy(a);
2356 else {
2357 a->f |= AF_CLOSE;
2358 selbuf_disable(&a->b);
2359 }
2360 return;
2361 }
2362 ac = str_qsplit(p, av, N(av) - 1, 0, STRF_QUOTE);
2363 if (!ac)
2364 return;
2365 av[ac] = 0;
2366 for (c = acmdtab; c->name; c++) {
2367 if (mystrieq(av[0], c->name)) {
2368 ac--;
2369 if (c->argmin > ac || ac > c->argmax) {
2370 if (!c->help)
2371 a_fail(a, "bad-syntax", "%s", c->name, "", A_END);
2372 else
2373 a_fail(a, "bad-syntax", "%s", c->name, "%s", c->help, A_END);
2374 } else
2375 c->func(a, ac, av + 1);
2376 return;
2377 }
2378 }
2379 a_fail(a, "unknown-command", "%s", av[0], A_END);
2380 }
2381
2382 /* --- @a_create@ --- *
2383 *
2384 * Arguments: @int fd_in, fd_out@ = file descriptors to use
2385 * @unsigned f@ = initial flags to set
2386 *
2387 * Returns: ---
2388 *
2389 * Use: Creates a new admin connection.
2390 */
2391
2392 void a_create(int fd_in, int fd_out, unsigned f)
2393 {
2394 admin *a = CREATE(admin);
2395
2396 T( static unsigned seq = 0;
2397 a->seq = seq++; )
2398 T( trace(T_ADMIN, "admin: accepted connection %u", a->seq); )
2399 a->bg = 0;
2400 a->ref = 0;
2401 a->svcs = 0;
2402 a_jobtableinit(&a->j);
2403 a->f = f;
2404 if (fd_in == STDIN_FILENO) a_stdin = a;
2405 fdflags(fd_in, O_NONBLOCK, O_NONBLOCK, FD_CLOEXEC, FD_CLOEXEC);
2406 if (fd_out != fd_in)
2407 fdflags(fd_out, O_NONBLOCK, O_NONBLOCK, FD_CLOEXEC, FD_CLOEXEC);
2408 selbuf_init(&a->b, &sel, fd_in, a_line, a);
2409 sel_initfile(&sel, &a->w, fd_out, SEL_WRITE, a_flush, a);
2410 a->out.hd = a->out.tl = 0;
2411 a->next = admins;
2412 a->prev = 0;
2413 if (admins) admins->prev = a;
2414 admins = a;
2415 }
2416
2417 /* --- @a_accept@ --- *
2418 *
2419 * Arguments: @int fd@ = file descriptor to accept
2420 * @unsigned mode@ = what to do
2421 * @void *v@ = uninteresting pointer
2422 *
2423 * Returns: ---
2424 *
2425 * Use: Accepts a new admin connection.
2426 */
2427
2428 static void a_accept(int fd, unsigned mode, void *v)
2429 {
2430 int nfd;
2431 struct sockaddr_un sun;
2432 socklen_t sz = sizeof(sun);
2433
2434 if ((nfd = accept(fd, (struct sockaddr *)&sun, &sz)) < 0) {
2435 if (errno != EINTR && errno != EAGAIN && errno != EWOULDBLOCK &&
2436 errno != ECONNABORTED && errno != EPROTO)
2437 a_warn("ADMIN", "accept-error", "?ERRNO", A_END);
2438 return;
2439 }
2440 a_create(nfd, nfd, 0);
2441 }
2442
2443 /* --- @a_preselect@ --- *
2444 *
2445 * Arguments: ---
2446 *
2447 * Returns: ---
2448 *
2449 * Use: Informs the admin module that we're about to select again,
2450 * and that it should do cleanup things it has delayed until a
2451 * `safe' time.
2452 */
2453
2454 void a_preselect(void) { if (a_dead) a_destroypending(); }
2455
2456 /* --- @a_daemon@ --- *
2457 *
2458 * Arguments: ---
2459 *
2460 * Returns: ---
2461 *
2462 * Use: Informs the admin module that it's a daemon.
2463 */
2464
2465 void a_daemon(void) { flags |= F_DAEMON; }
2466
2467 /* --- @a_init@ --- *
2468 *
2469 * Arguments: @const char *name@ = socket name to create
2470 * @uid_t u@ = user to own the socket
2471 * @gid_t g@ = group to own the socket
2472 * @mode_t m@ = permissions to set on the socket
2473 *
2474 * Returns: ---
2475 *
2476 * Use: Creates the admin listening socket.
2477 */
2478
2479 void a_init(const char *name, uid_t u, gid_t g, mode_t m)
2480 {
2481 int fd;
2482 int n = 5;
2483 struct sockaddr_un sun;
2484 struct sigaction sa;
2485 size_t sz;
2486 mode_t omask;
2487 #ifdef HAVE_LIBADNS
2488 int err;
2489 #endif
2490
2491 /* --- Create services table --- */
2492
2493 sym_create(&a_svcs);
2494
2495 /* --- Set up the socket address --- */
2496
2497 sz = strlen(name) + 1;
2498 if (sz > sizeof(sun.sun_path))
2499 die(EXIT_FAILURE, "socket name `%s' too long", name);
2500 BURN(sun);
2501 sun.sun_family = AF_UNIX;
2502 memcpy(sun.sun_path, name, sz);
2503 sz += offsetof(struct sockaddr_un, sun_path);
2504
2505 /* --- Attempt to bind to the socket --- */
2506
2507 omask = umask(0077);
2508 again:
2509 if ((fd = socket(PF_UNIX, SOCK_STREAM, 0)) < 0)
2510 die(EXIT_FAILURE, "couldn't create socket: %s", strerror(errno));
2511 if (bind(fd, (struct sockaddr *)&sun, sz) < 0) {
2512 struct stat st;
2513 int e = errno;
2514 if (errno != EADDRINUSE) {
2515 die(EXIT_FAILURE, "couldn't bind to address `%s': %s",
2516 sun.sun_path, strerror(e));
2517 }
2518 if (!n)
2519 die(EXIT_FAILURE, "too many retries; giving up");
2520 n--;
2521 if (!connect(fd, (struct sockaddr *)&sun, sz)) {
2522 die(EXIT_FAILURE, "server already listening on admin socket `%s'",
2523 sun.sun_path);
2524 }
2525 if (errno != ECONNREFUSED)
2526 die(EXIT_FAILURE, "couldn't bind to address: %s", strerror(e));
2527 if (stat(sun.sun_path, &st)) {
2528 die(EXIT_FAILURE, "couldn't stat `%s': %s",
2529 sun.sun_path, strerror(errno));
2530 }
2531 if (!S_ISSOCK(st.st_mode))
2532 die(EXIT_FAILURE, "object `%s' isn't a socket", sun.sun_path);
2533 T( trace(T_ADMIN, "admin: stale socket found; removing it"); )
2534 unlink(sun.sun_path);
2535 close(fd);
2536 goto again;
2537 }
2538 if (chown(sun.sun_path, u, g)) {
2539 die(EXIT_FAILURE, "failed to set socket owner: %s",
2540 strerror(errno));
2541 }
2542 if (chmod(sun.sun_path, m)) {
2543 die(EXIT_FAILURE, "failed to set socket permissions: %s",
2544 strerror(errno));
2545 }
2546 umask(omask);
2547 fdflags(fd, O_NONBLOCK, O_NONBLOCK, FD_CLOEXEC, FD_CLOEXEC);
2548 if (listen(fd, 5))
2549 die(EXIT_FAILURE, "couldn't listen on socket: %s", strerror(errno));
2550
2551 /* --- Listen to the socket --- */
2552
2553 sel_initfile(&sel, &sock, fd, SEL_READ, a_accept, 0);
2554 sel_addfile(&sock);
2555 sockname = name;
2556 #ifdef HAVE_LIBADNS
2557 if ((err = adns_init(&ads,
2558 (adns_if_permit_ipv4 | adns_if_permit_ipv6 |
2559 adns_if_noserverwarn | adns_if_nosigpipe |
2560 adns_if_noautosys),
2561 0)) != 0)
2562 die(EXIT_FAILURE, "failed to initialize ADNS: %s", strerror(errno));
2563 sel_addhook(&sel, &hook, before_select, after_select, 0);
2564 #else
2565 bres_init(&sel);
2566 #endif
2567 T( trace_custom(a_trace, 0);
2568 trace(T_ADMIN, "admin: enabled custom tracing"); )
2569 flags |= F_INIT;
2570
2571 /* --- Set up signal handlers --- */
2572
2573 sig_add(&s_term, SIGTERM, a_sigdie, 0);
2574 sig_add(&s_hup, SIGHUP, a_sighup, 0);
2575 sigaction(SIGINT, 0, &sa);
2576 if (sa.sa_handler != SIG_IGN)
2577 sig_add(&s_int, SIGINT, a_sigdie, 0);
2578 }
2579
2580 /*----- That's all, folks -------------------------------------------------*/