Added uptime and hashstatus commands to libdcui.
[doldaconnect.git] / lib / uilib.c
CommitLineData
d3372da9 1/*
2 * Dolda Connect - Modular multiuser Direct Connect-style client
302a2600 3 * Copyright (C) 2004 Fredrik Tolf <fredrik@dolda2000.com>
d3372da9 4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License as published by
7 * the Free Software Foundation; either version 2 of the License, or
8 * (at your option) any later version.
9 *
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
14 *
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
18*/
19
20/*
21 * Note: This code is still ugly, since I copied it almost verbatim
22 * from the daemon's parser. It would need serious cleanups, but at
23 * least it works for now.
24 */
25
26#ifdef HAVE_CONFIG_H
27#include <config.h>
28#endif
29#include <stdio.h>
30#include <unistd.h>
31#include <stdlib.h>
32#include <string.h>
33#include <iconv.h>
34#include <wchar.h>
35#include <wctype.h>
36#include <errno.h>
37#include <stdarg.h>
38#include <sys/socket.h>
39#include <netinet/in.h>
40#include <arpa/inet.h>
12383d48 41#include <sys/un.h>
d3372da9 42#include <fcntl.h>
43#include <netdb.h>
44#include <sys/poll.h>
12383d48 45#include <pwd.h>
d3372da9 46#ifdef HAVE_RESOLVER
47#include <arpa/nameser.h>
48#include <resolv.h>
49#endif
50
51#include <doldaconnect/uilib.h>
31c700d1 52#include <utils.h>
d3372da9 53
4d487bad 54#define DOLCON_SRV_NAME "_dolcon._tcp"
55
d3372da9 56#define RESP_END -1
57#define RESP_DSC 0
58#define RESP_STR 1
59#define RESP_INT 2
60#define RESP_FLOAT 3
8f623b36 61#define RESP_LNUM 4
d3372da9 62
63struct respclass
64{
65 struct respclass *next;
66 int code;
67 int nwords;
68 int *wordt;
69};
70
71struct command
72{
73 struct command *next;
74 wchar_t *name;
75 struct respclass *classes;
76};
77
78struct qcmd
79{
80 struct qcmd *next;
81 struct command *cmd;
82 int tag;
83 char *buf;
84 size_t buflen;
85 int (*callback)(struct dc_response *resp);
86 void *data;
87};
88
89void dc_uimisc_disconnected(void);
90
91/* The first command must be the nameless connect command and second
92 * the notification command. */
93static struct command *commands = NULL;
94static struct qcmd *queue = NULL, *queueend = NULL;
95static struct dc_response *respqueue = NULL, *respqueueend = NULL;
96static int state = -1;
97static int fd = -1;
98static iconv_t ichandle;
99static int resetreader = 1;
d3372da9 100static struct addrinfo *hostlist = NULL, *curhost = NULL;
9e5f2b29 101struct {
102 char *hostname;
103 int family;
104 int sentcreds;
105} servinfo;
e4b88cc0 106char *dc_srv_local;
d3372da9 107
0538f877 108static void message(int bits, char *format, ...)
109{
110 static int hb = -1;
111 char *v;
112 va_list args;
113
114 if(hb == -1)
115 {
116 hb = 0;
117 if((v = getenv("LIBDCUI_MSG")) != NULL)
118 hb = strtol(v, NULL, 0) & 65535;
119 }
120 if(hb & bits)
121 {
122 va_start(args, format);
123 vfprintf(stderr, format, args);
124 va_end(args);
125 }
126}
127
128static char *formataddress(struct sockaddr *arg, socklen_t arglen)
129{
130 struct sockaddr_in *ipv4;
131#ifdef HAVE_IPV6
132 struct sockaddr_in6 *ipv6;
133#endif
134 static char *ret = NULL;
135 char buf[1024];
136
137 if(ret != NULL)
138 free(ret);
139 ret = NULL;
140 switch(arg->sa_family)
141 {
142 case AF_UNIX:
143 ret = sprintf2("Unix socket (%s)", ((struct sockaddr_un *)arg)->sun_path);
144 break;
145 case AF_INET:
146 ipv4 = (struct sockaddr_in *)arg;
147 if(inet_ntop(AF_INET, &ipv4->sin_addr, buf, sizeof(buf)) == NULL)
148 return(NULL);
149 ret = sprintf2("%s:%i", buf, (int)ntohs(ipv4->sin_port));
150 break;
151#ifdef HAVE_IPV6
152 case AF_INET6:
153 ipv6 = (struct sockaddr_in6 *)arg;
154 if(inet_ntop(AF_INET6, &ipv6->sin6_addr, buf, sizeof(buf)) == NULL)
155 return(NULL);
156 ret = sprintf2("[%s]:%i", buf, (int)ntohs(ipv6->sin6_port));
157 break;
158#endif
159 default:
160 errno = EPFNOSUPPORT;
161 break;
162 }
163 return(ret);
164}
d3372da9 165static struct dc_response *makeresp(void)
166{
167 struct dc_response *new;
168
169 new = smalloc(sizeof(*new));
170 new->next = NULL;
171 new->prev = NULL;
172 new->code = 0;
173 new->cmdname = NULL;
174 new->rlines = NULL;
175 new->linessize = 0;
176 new->numlines = 0;
177 new->curline = 0;
178 new->data = NULL;
179 return(new);
180}
181
182static void freeqcmd(struct qcmd *qcmd)
183{
184 if(qcmd->buf != NULL)
185 free(qcmd->buf);
186 free(qcmd);
187}
188
189static void unlinkqueue(void)
190{
191 struct qcmd *qcmd;
192
193 if((qcmd = queue) == NULL)
194 return;
195 queue = qcmd->next;
196 if(queue == NULL)
197 queueend = NULL;
198 freeqcmd(qcmd);
199}
200
201static struct qcmd *makeqcmd(wchar_t *name)
202{
203 struct qcmd *new;
204 struct command *cmd;
205 static int tag = 0;
206
207 if(name == NULL)
208 {
209 cmd = commands;
210 } else {
211 for(cmd = commands; cmd != NULL; cmd = cmd->next)
212 {
213 if((cmd->name != NULL) && !wcscmp(cmd->name, name))
214 break;
215 }
ee9bb4f3
FT
216 if(cmd == NULL) {
217 errno = ENOSYS; /* Bleh */
d3372da9 218 return(NULL);
ee9bb4f3 219 }
d3372da9 220 }
221 new = smalloc(sizeof(*new));
222 new->tag = tag++;
223 new->cmd = cmd;
224 new->buf = NULL;
225 new->buflen = 0;
226 new->callback = NULL;
227 new->next = NULL;
228 new->data = NULL;
229 if(queueend == NULL)
230 {
231 queue = queueend = new;
232 } else {
233 queueend->next = new;
234 queueend = new;
235 }
236 return(new);
237}
238
239static wchar_t *quoteword(wchar_t *word)
240{
241 wchar_t *wp, *buf, *bp;
242 int dq, numbs, numc;
243
244 dq = 0;
245 numbs = 0;
246 numc = 0;
247 if(*word == L'\0')
248 {
249 dq = 1;
250 } else {
251 for(wp = word; *wp != L'\0'; wp++)
252 {
253 if(!dq && iswspace(*wp))
254 dq = 1;
255 if((*wp == L'\\') || (*wp == L'\"'))
256 numbs++;
257 numc++;
258 }
259 }
260 if(!dq && !numbs)
261 return(NULL);
262 bp = buf = smalloc(sizeof(wchar_t) * (numc + numbs + (dq?2:0) + 1));
263 if(dq)
264 *(bp++) = L'\"';
265 for(wp = word; *wp != L'\0'; wp++)
266 {
267 if((*wp == L'\\') || (*wp == L'\"'))
268 *(bp++) = L'\\';
269 *(bp++) = *wp;
270 }
271 if(dq)
272 *(bp++) = L'\"';
273 *(bp++) = L'\0';
274 return(buf);
275}
276
277static struct command *makecmd(wchar_t *name)
278{
279 struct command *new;
280
281 new = smalloc(sizeof(*new));
282 new->name = name;
283 new->classes = NULL;
284 new->next = commands;
285 commands = new;
286 return(new);
287}
288
289static struct respclass *addresp(struct command *cmd, int code, ...)
290{
291 struct respclass *new;
292 int i;
293 int resps[128];
294 va_list args;
295
296 va_start(args, code);
297 i = 0;
298 while((resps[i++] = va_arg(args, int)) != RESP_END);
299 i--;
300 va_end(args);
301 new = smalloc(sizeof(*new));
302 new->code = code;
303 new->nwords = i;
304 if(i > 0)
305 {
306 new->wordt = smalloc(sizeof(int) * i);
307 memcpy(new->wordt, resps, sizeof(int) * i);
308 } else {
309 new->wordt = NULL;
310 }
311 new->next = cmd->classes;
312 cmd->classes = new;
313 return(new);
314}
315
316#include "initcmds.h"
317
318int dc_init(void)
319{
320 if((ichandle = iconv_open("wchar_t", "utf-8")) == (iconv_t)-1)
321 return(-1);
e4b88cc0 322 dc_srv_local = sstrdup("");
d3372da9 323 initcmds();
324 return(0);
325}
326
327void dc_cleanup(void)
328{
329 iconv_close(ichandle);
330}
331
332void dc_disconnect(void)
333{
334 struct dc_response *resp;
335
336 state = -1;
337 if(fd >= 0)
338 close(fd);
339 fd = -1;
340 while(queue != NULL)
341 unlinkqueue();
342 while((resp = dc_getresp()) != NULL)
343 dc_freeresp(resp);
344 dc_uimisc_disconnected();
9e5f2b29 345 if(servinfo.hostname != NULL)
346 free(servinfo.hostname);
347 memset(&servinfo, 0, sizeof(servinfo));
d3372da9 348}
349
350void dc_freeresp(struct dc_response *resp)
351{
352 int i, o;
353
354 for(i = 0; i < resp->numlines; i++)
355 {
356 for(o = 0; o < resp->rlines[i].argc; o++)
357 free(resp->rlines[i].argv[o]);
358 free(resp->rlines[i].argv);
359 }
360 free(resp->rlines);
361 free(resp);
362}
363
364struct dc_response *dc_getresp(void)
365{
366 struct dc_response *ret;
367
368 if((ret = respqueue) == NULL)
369 return(NULL);
370 respqueue = ret->next;
371 if(respqueue == NULL)
372 respqueueend = NULL;
373 else
374 respqueue->prev = NULL;
375 return(ret);
376}
377
378struct dc_response *dc_gettaggedresp(int tag)
379{
380 struct dc_response *resp;
381
382 for(resp = respqueue; resp != NULL; resp = resp->next)
383 {
384 if(resp->tag == tag)
385 {
386 if(resp->prev != NULL)
387 resp->prev->next = resp->next;
388 if(resp->next != NULL)
389 resp->next->prev = resp->prev;
390 if(resp == respqueue)
391 respqueue = resp->next;
392 if(resp == respqueueend)
393 respqueueend = resp->prev;
394 return(resp);
395 }
396 }
397 return(NULL);
398}
399
400struct dc_response *dc_gettaggedrespsync(int tag)
401{
402 struct pollfd pfd;
403 struct dc_response *resp;
404
405 while((resp = dc_gettaggedresp(tag)) == NULL)
406 {
407 pfd.fd = fd;
408 pfd.events = POLLIN;
409 if(dc_wantwrite())
410 pfd.events |= POLLOUT;
411 if(poll(&pfd, 1, -1) < 0)
412 return(NULL);
413 if((pfd.revents & POLLIN) && dc_handleread())
414 return(NULL);
415 if((pfd.revents & POLLOUT) && dc_handlewrite())
416 return(NULL);
417 }
418 return(resp);
419}
420
421int dc_wantwrite(void)
422{
423 switch(state)
424 {
425 case 1:
426 if((queue != NULL) && (queue->buflen > 0))
427 return(1);
428 break;
429 }
430 return(0);
431}
432
433int dc_getstate(void)
434{
435 return(state);
436}
437
438int dc_queuecmd(int (*callback)(struct dc_response *), void *data, ...)
439{
440 struct qcmd *qcmd;
441 int num, freepart;
442 va_list al;
ccad23d3 443 char *final, *sarg;
d3372da9 444 wchar_t **toks;
445 wchar_t *buf;
446 wchar_t *part, *tpart;
447 size_t bufsize, bufdata;
448
449 buf = NULL;
450 bufsize = bufdata = 0;
451 num = 0;
452 va_start(al, data);
453 while((part = va_arg(al, wchar_t *)) != NULL)
454 {
ccad23d3 455 if(!wcscmp(part, L"%a"))
d3372da9 456 {
457 for(toks = va_arg(al, wchar_t **); *toks != NULL; toks++)
458 {
459 part = *toks;
460 freepart = 0;
461 if((tpart = quoteword(part)) != NULL)
462 {
463 freepart = 1;
464 part = tpart;
465 }
466 addtobuf(buf, L' ');
467 bufcat(buf, part, wcslen(part));
468 num++;
469 if(freepart)
470 free(part);
471 }
472 } else {
473 if(*part == L'%')
474 {
ccad23d3 475 tpart = part + 1;
476 if(!wcscmp(tpart, L"i"))
d3372da9 477 {
ccad23d3 478 freepart = 1;
479 part = swprintf2(L"%i", va_arg(al, int));
312c174e
FT
480 } else if(!wcscmp(tpart, L"li")) {
481 freepart = 1;
482 part = swprintf2(L"%ji", (intmax_t)va_arg(al, dc_lnum_t));
ccad23d3 483 } else if(!wcscmp(tpart, L"s")) {
484 freepart = 1;
485 part = icmbstowcs(sarg = va_arg(al, char *), NULL);
486 if(part == NULL)
d3372da9 487 {
ccad23d3 488 if(buf != NULL)
489 free(buf);
490 return(-1);
d3372da9 491 }
ccad23d3 492 } else if(!wcscmp(tpart, L"ls")) {
493 part = va_arg(al, wchar_t *);
494 } else if(!wcscmp(tpart, L"ll")) {
495 freepart = 1;
496 part = swprintf2(L"%lli", va_arg(al, long long));
497 } else if(!wcscmp(tpart, L"f")) {
498 freepart = 1;
499 part = swprintf2(L"%f", va_arg(al, double));
500 } else if(!wcscmp(tpart, L"x")) {
501 freepart = 1;
502 part = swprintf2(L"%x", va_arg(al, int));
503 } else {
504 if(buf != NULL)
505 free(buf);
ee9bb4f3 506 errno = EINVAL;
ccad23d3 507 return(-1);
d3372da9 508 }
d3372da9 509 } else {
510 freepart = 0;
511 }
512 if((tpart = quoteword(part)) != NULL)
513 {
514 if(freepart)
515 free(part);
516 part = tpart;
517 freepart = 1;
518 }
519 if(num > 0)
520 addtobuf(buf, L' ');
521 if(num == 0)
522 {
523 if((qcmd = makeqcmd(part)) == NULL)
524 {
525 if(freepart)
526 free(part);
527 if(buf != NULL)
528 free(buf);
529 return(-1);
530 } else {
531 qcmd->callback = callback;
532 qcmd->data = data;
533 }
534 }
535 bufcat(buf, part, wcslen(part));
536 num++;
537 if(freepart)
538 free(part);
539 }
540 }
541 bufcat(buf, L"\r\n\0", 3);
542 if((final = icwcstombs(buf, "utf-8")) == NULL)
543 {
544 free(buf);
545 return(-1);
546 }
547 va_end(al);
548 free(buf);
549 qcmd->buf = final;
550 qcmd->buflen = strlen(final);
551 return(qcmd->tag);
552}
553
554int dc_handleread(void)
555{
556 int ret, done;
557 char *p1, *p2;
558 size_t len;
26d72b0d 559 socklen_t optlen;
d3372da9 560 int errnobak;
561 /* Ewww... this really is soo ugly. I need to clean this up some day. */
562 static int pstate = 0;
563 static char inbuf[128];
564 static size_t inbufdata = 0;
565 static wchar_t *cbuf = NULL;
566 static size_t cbufsize = 0, cbufdata = 0;
567 static wchar_t *pptr = NULL;
568 static wchar_t **argv = NULL;
26d72b0d 569 static int argc = 0;
570 static size_t args = 0;
d3372da9 571 static wchar_t *cw = NULL;
572 static size_t cwsize = 0, cwdata = 0;
573 static struct dc_response *curresp = NULL;
574 static int cont = 0;
575 static int unlink = 0;
576
577 switch(state)
578 {
579 case -1:
580 return(-1);
581 case 0:
26d72b0d 582 optlen = sizeof(ret);
583 getsockopt(fd, SOL_SOCKET, SO_ERROR, &ret, &optlen);
d3372da9 584 if(ret)
585 {
586 int newfd;
0538f877 587
588 message(2, "could not connect to %s: %s\n", formataddress(curhost->ai_addr, curhost->ai_addrlen), strerror(ret));
d3372da9 589 for(curhost = curhost->ai_next; curhost != NULL; curhost = curhost->ai_next)
590 {
591 if((newfd = socket(curhost->ai_family, curhost->ai_socktype, curhost->ai_protocol)) < 0)
592 {
593 errnobak = errno;
594 dc_disconnect();
595 errno = errnobak;
596 return(-1);
597 }
598 dup2(newfd, fd);
599 close(newfd);
600 fcntl(fd, F_SETFL, fcntl(fd, F_GETFL) | O_NONBLOCK);
0538f877 601 message(4, "connecting to %s\n", formataddress(curhost->ai_addr, curhost->ai_addrlen));
12383d48 602 if(connect(fd, (struct sockaddr *)curhost->ai_addr, curhost->ai_addrlen))
d3372da9 603 {
604 if(errno == EINPROGRESS)
605 return(0);
0538f877 606 message(2, "could not connect to %s: %s\n", formataddress(curhost->ai_addr, curhost->ai_addrlen), strerror(ret));
d3372da9 607 } else {
608 break;
609 }
610 }
611 if(curhost == NULL)
612 {
613 dc_disconnect();
614 errno = ret;
615 return(-1);
616 }
617 }
12383d48 618 if(curhost->ai_canonname != NULL)
9e5f2b29 619 servinfo.hostname = sstrdup(curhost->ai_canonname);
620 servinfo.family = curhost->ai_family;
d3372da9 621 state = 1;
622 resetreader = 1;
623 break;
624 case 1:
625 if(resetreader)
626 {
627 inbufdata = 0;
628 cbufdata = 0;
629 pptr = NULL;
630 pstate = 0;
631 resetreader = 0;
632 cont = 0;
633 if(curresp != NULL)
634 dc_freeresp(curresp);
635 curresp = NULL;
636 }
637 if(inbufdata == 128)
638 inbufdata = 0;
639 ret = read(fd, inbuf + inbufdata, 128 - inbufdata);
640 if(ret < 0)
641 {
642 if((errno == EAGAIN) || (errno == EINTR))
643 return(0);
644 errnobak = errno;
645 dc_disconnect();
646 errno = errnobak;
647 return(-1);
648 } else if(ret == 0) {
649 dc_disconnect();
650 errno = 0;
651 return(-1);
652 }
653 inbufdata += ret;
654 done = 0;
655 while(!done)
656 {
657 if(cbufsize == cbufdata)
658 {
659 if(pptr != NULL)
660 len = pptr - cbuf;
661 if((cbuf = realloc(cbuf, sizeof(wchar_t) * (cbufsize += 256))) == NULL)
662 {
663 dc_disconnect();
664 errno = ENOMEM;
665 return(-1);
666 }
667 if(pptr != NULL)
668 pptr = cbuf + len;
669 }
670 p1 = inbuf;
671 p2 = (char *)(cbuf + cbufdata);
672 len = sizeof(wchar_t) * (cbufsize - cbufdata);
673 ret = iconv(ichandle, &p1, &inbufdata, &p2, &len);
674 memmove(inbuf, p1, inbufdata);
675 cbufdata = cbufsize - (len / sizeof(wchar_t));
676 if(ret < 0)
677 {
678 switch(errno)
679 {
680 case EILSEQ:
681 /* XXX Is this really OK? */
682 inbufdata = 0;
683 done = 1;
684 break;
685 case EINVAL:
686 done = 1;
687 break;
688 case E2BIG:
689 break;
690 default:
691 errnobak = errno;
692 dc_disconnect();
693 errno = errnobak;
694 return(-1);
695 }
696 } else {
697 done = 1;
698 }
699 }
700 if(pptr == NULL)
701 pptr = cbuf;
702 done = 0;
703 while(!done && (pptr - cbuf < cbufdata))
704 {
705 switch(pstate)
706 {
707 case 0:
708 if(iswspace(*pptr))
709 {
710 if(*pptr == L'\r')
711 {
712 if(pptr == cbuf + cbufdata - 1)
713 {
714 done = 1;
715 break;
716 }
717 if(*(++pptr) == L'\n')
718 {
719 if(curresp == NULL)
720 {
721 curresp = makeresp();
722 if((argc > 0) && ((curresp->code = wcstol(argv[0], NULL, 10)) >= 600))
723 {
724 curresp->cmdname = L".notify";
725 curresp->internal = commands->next;
726 curresp->tag = -1;
727 unlink = 0;
728 } else {
729 if((curresp->cmdname = queue->cmd->name) == NULL)
730 curresp->cmdname = L".connect";
731 curresp->data = queue->data;
732 curresp->tag = queue->tag;
733 curresp->internal = (void *)(queue->cmd);
734 unlink = 1;
735 }
736 }
737 sizebuf(&curresp->rlines, &curresp->linessize, curresp->numlines + 1, sizeof(*(curresp->rlines)), 1);
738 curresp->rlines[curresp->numlines].argc = argc;
739 curresp->rlines[curresp->numlines].argv = argv;
740 argv = NULL;
741 argc = args = 0;
742 curresp->numlines++;
743 if(!cont)
744 {
745 if((curresp->code >= 600) || (queue == NULL) || (queue->callback == NULL))
746 ret = 0;
747 else
748 ret = queue->callback(curresp);
749 if(ret == 0)
750 {
751 if(respqueue == NULL)
752 {
753 respqueue = respqueueend = curresp;
754 } else {
755 curresp->next = NULL;
756 curresp->prev = respqueueend;
757 respqueueend->next = curresp;
758 respqueueend = curresp;
759 }
760 } else if(ret == 1) {
761 dc_freeresp(curresp);
762 }
763 curresp = NULL;
764 if(unlink)
765 unlinkqueue();
766 }
767 wmemmove(cbuf, pptr, cbufdata -= (pptr - cbuf));
768 pptr = cbuf;
769 } else {
770 pptr++;
771 }
772 } else {
773 pptr++;
774 }
775 } else {
776 pstate = 1;
777 cwdata = 0;
778 }
779 break;
780 case 1:
781 if(iswspace(*pptr) || ((argc == 0) && (*pptr == L'-')))
782 {
783 if(argc == 0)
784 {
785 if(*pptr == L'-')
786 {
787 cont = 1;
788 pptr++;
789 } else {
790 cont = 0;
791 }
792 }
793 addtobuf(cw, L'\0');
794 sizebuf(&argv, &args, argc + 1, sizeof(*argv), 1);
795 argv[argc++] = cw;
796 cw = NULL;
797 cwsize = cwdata = 0;
798 pstate = 0;
799 } else if(*pptr == L'\"') {
800 pstate = 2;
801 pptr++;
802 } else if(*pptr == L'\\') {
803 if(pptr == cbuf + cbufdata - 1)
804 {
805 done = 1;
806 break;
807 }
808 addtobuf(cw, *(++pptr));
809 pptr++;
810 } else {
811 addtobuf(cw, *(pptr++));
812 }
813 break;
814 case 2:
815 if(*pptr == L'\"')
816 {
817 pstate = 1;
818 } else if(*pptr == L'\\') {
819 addtobuf(cw, *(++pptr));
820 } else {
821 addtobuf(cw, *pptr);
822 }
823 pptr++;
824 break;
825 }
826 }
827 break;
828 }
829 return(0);
830}
831
a8c5ada6 832#if UNIX_AUTH_STYLE == 1
9e5f2b29 833static void mkcreds(struct msghdr *msg)
834{
835 struct ucred *ucred;
836 static char buf[CMSG_SPACE(sizeof(*ucred))];
837 struct cmsghdr *cmsg;
838
839 msg->msg_control = buf;
840 msg->msg_controllen = sizeof(buf);
841 cmsg = CMSG_FIRSTHDR(msg);
842 cmsg->cmsg_level = SOL_SOCKET;
843 cmsg->cmsg_type = SCM_CREDENTIALS;
844 cmsg->cmsg_len = CMSG_LEN(sizeof(*ucred));
845 ucred = (struct ucred *)CMSG_DATA(cmsg);
846 ucred->pid = getpid();
847 ucred->uid = getuid();
848 ucred->gid = getgid();
849 msg->msg_controllen = cmsg->cmsg_len;
850}
a8c5ada6 851#endif
9e5f2b29 852
d3372da9 853int dc_handlewrite(void)
854{
855 int ret;
856 int errnobak;
9e5f2b29 857 struct msghdr msg;
858 struct iovec bufvec;
d3372da9 859
860 switch(state)
861 {
862 case 1:
863 if(queue->buflen > 0)
864 {
9e5f2b29 865 memset(&msg, 0, sizeof(msg));
866 msg.msg_iov = &bufvec;
867 msg.msg_iovlen = 1;
868 bufvec.iov_base = queue->buf;
869 bufvec.iov_len = queue->buflen;
a8c5ada6 870#if UNIX_AUTH_STYLE == 1
9e5f2b29 871 if((servinfo.family == PF_UNIX) && !servinfo.sentcreds)
872 {
873 mkcreds(&msg);
874 servinfo.sentcreds = 1;
875 }
a8c5ada6 876#endif
9e5f2b29 877 ret = sendmsg(fd, &msg, MSG_NOSIGNAL | MSG_DONTWAIT);
d3372da9 878 if(ret < 0)
879 {
880 if((errno == EAGAIN) || (errno == EINTR))
881 return(0);
882 errnobak = errno;
883 dc_disconnect();
884 errno = errnobak;
885 return(-1);
886 }
887 if(ret > 0)
888 memmove(queue->buf, queue->buf + ret, queue->buflen -= ret);
889 }
890 break;
891 }
892 return(0);
893}
894
895#ifdef HAVE_RESOLVER
0c58c2a0 896/*
897 * It kind of sucks that libresolv doesn't have any DNS parsing
898 * routines. We'll have to do it manually.
899 */
d3372da9 900static char *readname(unsigned char *msg, unsigned char *eom, unsigned char **p)
901{
902 char *name, *tname;
903 unsigned char *tp;
904 size_t namesize, namedata, len;
905
906 name = NULL;
907 namesize = namedata = 0;
908 while(1)
909 {
910 len = *((*p)++);
911 if(len == 0)
912 {
913 addtobuf(name, 0);
914 return(name);
915 } else if(len == 0xc0) {
916 tp = msg + *((*p)++);
917 if((tname = readname(msg, eom, &tp)) == NULL)
918 {
919 if(name != NULL)
920 free(name);
921 return(NULL);
922 }
923 bufcat(name, tname, strlen(tname));
924 addtobuf(name, 0);
925 free(tname);
926 return(name);
927 } else if(*p + len >= eom) {
928 if(name != NULL)
929 free(name);
930 return(NULL);
931 }
932 bufcat(name, *p, len);
933 *p += len;
934 addtobuf(name, '.');
935 }
936}
937
938static int skipname(unsigned char *msg, unsigned char *eom, unsigned char **p)
939{
940 size_t len;
941
942 while(1)
943 {
944 len = *((*p)++);
945 if(len == 0)
946 {
947 return(0);
948 } else if(len == 0xc0) {
949 (*p)++;
950 return(0);
951 } else if(*p + len >= eom) {
952 return(-1);
953 }
954 *p += len;
955 }
956}
957
958static int getsrvrr(char *name, char **host, int *port)
959{
960 int i;
961 char *name2, *rrname;
962 unsigned char *eom, *p;
963 unsigned char buf[1024];
964 int flags, num, class, type;
965 size_t len;
966 int ret;
967
968 if(!(_res.options & RES_INIT))
969 {
970 if(res_init() < 0)
971 return(-1);
972 }
973 /* res_querydomain doesn't work for some reason */
4d487bad 974 if(name[strlen(name) - 1] == '.')
975 name2 = sprintf2("%s.%s", DOLCON_SRV_NAME, name);
976 else
977 name2 = sprintf2("%s.%s.", DOLCON_SRV_NAME, name);
d3372da9 978 ret = res_query(name2, C_IN, T_SRV, buf, sizeof(buf));
979 if(ret < 0)
980 {
981 free(name2);
982 return(-1);
983 }
984 eom = buf + ret;
0c58c2a0 985 /*
986 * Assume transaction ID is correct.
987 *
988 * Flags check: FA0F masks in request/response flag, opcode,
989 * truncated flag and status code, and ignores authoritativeness,
990 * recursion flags and DNSSEC and reserved bits.
991 */
d3372da9 992 flags = (buf[2] << 8) + buf[3];
993 if((flags & 0xfa0f) != 0x8000)
994 {
995 free(name2);
996 return(-1);
997 }
0c58c2a0 998 /* Skip the query entries */
d3372da9 999 num = (buf[4] << 8) + buf[5];
1000 p = buf + 12;
1001 for(i = 0; i < num; i++)
1002 {
1003 if(skipname(buf, eom, &p))
1004 {
1005 free(name2);
1006 return(-1);
1007 }
0c58c2a0 1008 p += 4; /* Type and class */
d3372da9 1009 }
0c58c2a0 1010 /* Parse answers */
d3372da9 1011 num = (buf[6] << 8) + buf[7];
1012 for(i = 0; i < num; i++)
1013 {
1014 if((rrname = readname(buf, eom, &p)) == NULL)
1015 {
1016 free(name2);
1017 return(-1);
1018 }
1019 type = *(p++) << 8;
1020 type += *(p++);
1021 class = *(p++) << 8;
1022 class += *(p++);
0c58c2a0 1023 p += 4; /* TTL */
d3372da9 1024 len = *(p++) << 8;
1025 len += *(p++);
1026 if((class == C_IN) && (type == T_SRV) && !strcmp(rrname, name2))
1027 {
1028 free(rrname);
1029 free(name2);
1030 /* Noone will want to have alternative DC servers, so
1031 * don't care about priority and weigth */
1032 p += 4;
1033 if(port == NULL)
1034 {
1035 p += 2;
1036 } else {
1037 *port = *(p++) << 8;
1038 *port += *(p++);
1039 }
1040 if(host != NULL)
1041 {
1042 if((rrname = readname(buf, eom, &p)) == NULL)
1043 return(-1);
1044 *host = rrname;
1045 }
1046 return(0);
1047 }
1048 p += len;
1049 free(rrname);
1050 }
1051 free(name2);
1052 return(-1);
1053}
1054#else
1055static int getsrvrr(char *name, char **host, int *port)
1056{
c4c34936 1057 errno = EOPNOTSUPP;
d3372da9 1058 return(-1);
1059}
1060#endif
1061
12383d48 1062static struct addrinfo *gaicat(struct addrinfo *l1, struct addrinfo *l2)
d3372da9 1063{
12383d48 1064 struct addrinfo *p;
1065
1066 if(l1 == NULL)
1067 return(l2);
1068 for(p = l1; p->ai_next != NULL; p = p->ai_next);
1069 p->ai_next = l2;
1070 return(l1);
1071}
1072
1073/* This isn't actually correct, in any sense of the word. It only
1074 * works on systems whose getaddrinfo implementation saves the
1075 * sockaddr in the same malloc block as the struct addrinfo. Those
1076 * systems include at least FreeBSD and glibc-based systems, though,
1077 * so it should not be any immediate threat, and it allows me to not
1078 * implement a getaddrinfo wrapper. It can always be changed, should
1079 * the need arise. */
1080static struct addrinfo *unixgai(int type, char *path)
1081{
1082 void *buf;
1083 struct addrinfo *ai;
1084 struct sockaddr_un *un;
1085
1086 buf = smalloc(sizeof(*ai) + sizeof(*un));
1087 memset(buf, 0, sizeof(*ai) + sizeof(*un));
1088 ai = (struct addrinfo *)buf;
1089 un = (struct sockaddr_un *)(buf + sizeof(*ai));
1090 ai->ai_flags = 0;
1091 ai->ai_family = AF_UNIX;
1092 ai->ai_socktype = type;
1093 ai->ai_protocol = 0;
1094 ai->ai_addrlen = sizeof(*un);
1095 ai->ai_addr = (struct sockaddr *)un;
1096 ai->ai_canonname = NULL;
1097 ai->ai_next = NULL;
1098 un->sun_family = PF_UNIX;
1099 strncpy(un->sun_path, path, sizeof(un->sun_path) - 1);
1100 return(ai);
1101}
1102
1103static struct addrinfo *resolvtcp(char *name, int port)
1104{
1105 struct addrinfo hint, *ret;
1106 char tmp[32];
d3372da9 1107
d3372da9 1108 memset(&hint, 0, sizeof(hint));
1109 hint.ai_socktype = SOCK_STREAM;
12383d48 1110 hint.ai_flags = AI_NUMERICSERV | AI_CANONNAME;
1111 snprintf(tmp, sizeof(tmp), "%i", port);
1112 if(!getaddrinfo(name, tmp, &hint, &ret))
1113 return(ret);
1114 return(NULL);
1115}
1116
1117static struct addrinfo *resolvsrv(char *name)
1118{
1119 struct addrinfo *ret;
1120 char *realname;
1121 int port;
1122
1123 if(getsrvrr(name, &realname, &port))
1124 return(NULL);
0538f877 1125 message(4, "SRV RR resolved: %s -> %s\n", name, realname);
12383d48 1126 ret = resolvtcp(realname, port);
1127 free(realname);
1128 return(ret);
1129}
1130
1131static struct addrinfo *resolvhost(char *host)
1132{
1133 char *p, *hp;
1134 struct addrinfo *ret;
1135 int port;
1136
1137 if(strchr(host, '/'))
1138 return(unixgai(SOCK_STREAM, host));
1139 if((strchr(host, ':') == NULL) && ((ret = resolvsrv(host)) != NULL))
1140 return(ret);
1141 ret = NULL;
1142 if((*host == '[') && ((p = strchr(host, ']')) != NULL))
d3372da9 1143 {
12383d48 1144 hp = memcpy(smalloc(p - host), host + 1, (p - host) - 1);
1145 hp[(p - host) - 1] = 0;
1146 if(strchr(hp, ':') != NULL) {
1147 port = 0;
1148 if(*(++p) == ':')
1149 port = atoi(p + 1);
1150 if(port == 0)
1151 port = 1500;
1152 ret = resolvtcp(hp, port);
d3372da9 1153 }
12383d48 1154 free(hp);
1155 }
1156 if(ret != NULL)
1157 return(ret);
1158 hp = sstrdup(host);
1159 port = 0;
1160 if((p = strrchr(hp, ':')) != NULL) {
1161 *(p++) = 0;
1162 port = atoi(p);
1163 }
1164 if(port == 0)
1165 port = 1500;
1166 ret = resolvtcp(hp, port);
1167 free(hp);
1168 if(ret != NULL)
1169 return(ret);
1170 return(NULL);
1171}
1172
8affe2ff 1173static struct addrinfo *getlocalai(void)
12383d48 1174{
1175 struct addrinfo *ret;
1176 struct passwd *pwd;
1177 char *tmp;
8affe2ff 1178
12383d48 1179 ret = NULL;
1180 if((getuid() != 0) && ((pwd = getpwuid(getuid())) != NULL))
1181 {
1182 tmp = sprintf2("/tmp/doldacond-%s", pwd->pw_name);
8affe2ff 1183 ret = unixgai(SOCK_STREAM, tmp);
12383d48 1184 free(tmp);
d3372da9 1185 }
12383d48 1186 ret = gaicat(ret, unixgai(SOCK_STREAM, "/var/run/doldacond.sock"));
8affe2ff 1187 return(ret);
1188}
1189
1190static struct addrinfo *defaulthost(void)
1191{
1192 struct addrinfo *ret;
1193 char *tmp;
1194 char dn[1024];
1195
0538f877 1196 if(((tmp = getenv("DCSERVER")) != NULL) && *tmp) {
1197 message(4, "using DCSERVER: %s\n", tmp);
8affe2ff 1198 return(resolvhost(tmp));
0538f877 1199 }
8affe2ff 1200 ret = getlocalai();
12383d48 1201 ret = gaicat(ret, resolvtcp("localhost", 1500));
1202 if(!getdomainname(dn, sizeof(dn)) && *dn && strcmp(dn, "(none)"))
1203 ret = gaicat(ret, resolvsrv(dn));
1204 return(ret);
1205}
1206
e4b88cc0 1207static int dc_connectai(struct addrinfo *hosts, struct qcmd **cnctcmd)
12383d48 1208{
1209 struct qcmd *qcmd;
1210 int errnobak;
1211
1212 if(fd >= 0)
1213 dc_disconnect();
1214 state = -1;
d3372da9 1215 if(hostlist != NULL)
1216 freeaddrinfo(hostlist);
8affe2ff 1217 hostlist = hosts;
d3372da9 1218 for(curhost = hostlist; curhost != NULL; curhost = curhost->ai_next)
1219 {
1220 if((fd = socket(curhost->ai_family, curhost->ai_socktype, curhost->ai_protocol)) < 0)
1221 {
1222 errnobak = errno;
e4b88cc0 1223 freeaddrinfo(hostlist);
1224 hostlist = NULL;
d3372da9 1225 errno = errnobak;
1226 return(-1);
1227 }
1228 fcntl(fd, F_SETFL, fcntl(fd, F_GETFL) | O_NONBLOCK);
0538f877 1229 message(4, "connecting to %s\n", formataddress(curhost->ai_addr, curhost->ai_addrlen));
12383d48 1230 if(connect(fd, (struct sockaddr *)curhost->ai_addr, curhost->ai_addrlen))
d3372da9 1231 {
1232 if(errno == EINPROGRESS)
1233 {
1234 state = 0;
1235 break;
1236 }
0538f877 1237 message(2, "could not connect to %s: %s\n", formataddress(curhost->ai_addr, curhost->ai_addrlen), strerror(errno));
d3372da9 1238 close(fd);
1239 fd = -1;
1240 } else {
12383d48 1241 if(curhost->ai_canonname != NULL)
9e5f2b29 1242 servinfo.hostname = sstrdup(curhost->ai_canonname);
1243 servinfo.family = curhost->ai_family;
d3372da9 1244 state = 1;
1245 break;
1246 }
1247 }
e4b88cc0 1248 if(state != -1)
1249 {
1250 qcmd = makeqcmd(NULL);
1251 if(cnctcmd != NULL)
1252 *cnctcmd = qcmd;
1253 resetreader = 1;
1254 } else {
1255 free(hostlist);
1256 hostlist = NULL;
1257 }
d3372da9 1258 return(fd);
1259}
1260
e4b88cc0 1261static int dc_connect2(char *host, struct qcmd **cnctcmd)
8affe2ff 1262{
1263 struct addrinfo *ai;
e4b88cc0 1264 struct qcmd *qcmd;
8affe2ff 1265 int ret;
1266
0538f877 1267 if(host == dc_srv_local) {
1268 message(4, "connect start: Unix\n");
e4b88cc0 1269 ai = getlocalai();
0538f877 1270 } else if(!host || !*host) {
1271 message(4, "connect start: default\n");
8affe2ff 1272 ai = defaulthost();
0538f877 1273 } else {
1274 message(4, "connect start: host %s\n", host);
8affe2ff 1275 ai = resolvhost(host);
0538f877 1276 }
8affe2ff 1277 if(ai == NULL)
1278 return(-1);
e4b88cc0 1279 ret = dc_connectai(ai, &qcmd);
1280 if((ret >= 0) && (cnctcmd != NULL))
1281 *cnctcmd = qcmd;
8affe2ff 1282 return(ret);
1283}
1284
e4b88cc0 1285int dc_connect(char *host)
1286{
1287 return(dc_connect2(host, NULL));
1288}
1289
1290int dc_connectsync(char *host, struct dc_response **respbuf)
8affe2ff 1291{
8affe2ff 1292 int ret;
e4b88cc0 1293 struct qcmd *cc;
1294 struct dc_response *resp;
8affe2ff 1295
e4b88cc0 1296 if((ret = dc_connect2(host, &cc)) < 0)
1297 return(-1);
1298 resp = dc_gettaggedrespsync(cc->tag);
1299 if(resp == NULL) {
1300 dc_disconnect();
1301 return(-1);
1302 }
1303 if(respbuf == NULL)
1304 dc_freeresp(resp);
1305 else
1306 *respbuf = resp;
1307 return(ret);
1308}
1309
1310int dc_connectsync2(char *host, int rev)
1311{
1312 int ret;
1313 struct dc_response *resp;
1314
1315 if((ret = dc_connectsync(host, &resp)) < 0)
1316 return(-1);
1317 if(dc_checkprotocol(resp, rev))
1318 {
1319 dc_freeresp(resp);
1320 dc_disconnect();
a24f31ec 1321 errno = EPROTONOSUPPORT;
e4b88cc0 1322 return(-1);
1323 }
1324 dc_freeresp(resp);
8affe2ff 1325 return(ret);
1326}
1327
d3372da9 1328struct dc_intresp *dc_interpret(struct dc_response *resp)
1329{
1330 int i;
1331 struct dc_intresp *iresp;
1332 struct command *cmd;
1333 struct respclass *cls;
1334 int code;
26d72b0d 1335 size_t args;
d3372da9 1336
1337 if((resp->numlines == 0) || (resp->rlines[0].argc == 0) || (resp->curline >= resp->numlines))
1338 return(NULL);
1339 code = wcstol(resp->rlines[0].argv[0], NULL, 10);
1340 cmd = (struct command *)(resp->internal);
1341 for(cls = cmd->classes; cls != NULL; cls = cls->next)
1342 {
1343 if(cls->code == code)
1344 break;
1345 }
1346 if(cls == NULL)
1347 return(NULL);
1348 if(cls->nwords >= resp->rlines[resp->curline].argc)
1349 return(NULL);
1350 iresp = smalloc(sizeof(*iresp));
1351 iresp->code = code;
1352 iresp->argv = NULL;
1353 iresp->argc = 0;
1354 args = 0;
1355 for(i = 0; i < cls->nwords; i++)
1356 {
1357 switch(cls->wordt[i])
1358 {
1359 case RESP_DSC:
1360 break;
1361 case RESP_STR:
1362 sizebuf(&(iresp->argv), &args, iresp->argc + 1, sizeof(*(iresp->argv)), 1);
1363 iresp->argv[iresp->argc].val.str = swcsdup(resp->rlines[resp->curline].argv[i + 1]);
1364 iresp->argv[iresp->argc].type = cls->wordt[i];
1365 iresp->argc++;
1366 break;
1367 case RESP_INT:
1368 sizebuf(&(iresp->argv), &args, iresp->argc + 1, sizeof(*(iresp->argv)), 1);
1369 iresp->argv[iresp->argc].val.num = wcstol(resp->rlines[resp->curline].argv[i + 1], NULL, 0);
1370 iresp->argv[iresp->argc].type = cls->wordt[i];
1371 iresp->argc++;
1372 break;
1373 case RESP_FLOAT:
1374 sizebuf(&(iresp->argv), &args, iresp->argc + 1, sizeof(*(iresp->argv)), 1);
1375 iresp->argv[iresp->argc].val.flnum = wcstod(resp->rlines[resp->curline].argv[i + 1], NULL);
1376 iresp->argv[iresp->argc].type = cls->wordt[i];
1377 iresp->argc++;
1378 break;
8f623b36
FT
1379 case RESP_LNUM:
1380 sizebuf(&(iresp->argv), &args, iresp->argc + 1, sizeof(*(iresp->argv)), 1);
1381 iresp->argv[iresp->argc].val.lnum = wcstoll(resp->rlines[resp->curline].argv[i + 1], NULL, 0);
1382 iresp->argv[iresp->argc].type = cls->wordt[i];
1383 iresp->argc++;
1384 break;
d3372da9 1385 }
1386 }
1387 resp->curline++;
1388 return(iresp);
1389}
1390
1391void dc_freeires(struct dc_intresp *ires)
1392{
1393 int i;
1394
1395 for(i = 0; i < ires->argc; i++)
1396 {
1397 if(ires->argv[i].type == RESP_STR)
1398 free(ires->argv[i].val.str);
1399 }
1400 free(ires->argv);
1401 free(ires);
1402}
1403
9a0ef8e1 1404int dc_checkprotocol(struct dc_response *resp, int revision)
1405{
1406 struct dc_intresp *ires;
1407 int low, high;
1408
1409 if(resp->code != 201)
1410 return(-1);
1411 resp->curline = 0;
1412 if((ires = dc_interpret(resp)) == NULL)
1413 return(-1);
1414 low = ires->argv[0].val.num;
e4b88cc0 1415 high = ires->argv[1].val.num;
9a0ef8e1 1416 dc_freeires(ires);
1417 if((revision < low) || (revision > high))
1418 return(-1);
1419 return(0);
1420}
1421
d3372da9 1422const char *dc_gethostname(void)
1423{
9e5f2b29 1424 return(servinfo.hostname);
d3372da9 1425}
e4b88cc0 1426
1427int dc_getfd(void)
1428{
1429 return(fd);
1430}