[package] uhttpd: redirect to same location with trailing slash appended if directori...
[openwrt.git] / package / uhttpd / src / uhttpd-utils.c
1 /*
2  * uhttpd - Tiny single-threaded httpd - Utility functions
3  *
4  *   Copyright (C) 2010 Jo-Philipp Wich <xm@subsignal.org>
5  *
6  *  Licensed under the Apache License, Version 2.0 (the "License");
7  *  you may not use this file except in compliance with the License.
8  *  You may obtain a copy of the License at
9  *
10  *      http://www.apache.org/licenses/LICENSE-2.0
11  *
12  *  Unless required by applicable law or agreed to in writing, software
13  *  distributed under the License is distributed on an "AS IS" BASIS,
14  *  WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
15  *  See the License for the specific language governing permissions and
16  *  limitations under the License.
17  */
18
19 #define _XOPEN_SOURCE 500       /* crypt() */
20 #define _BSD_SOURCE                     /* strcasecmp(), strncasecmp() */
21
22 #include "uhttpd.h"
23 #include "uhttpd-utils.h"
24
25 #ifdef HAVE_TLS
26 #include "uhttpd-tls.h"
27 #endif
28
29
30 static char *uh_index_files[] = {
31         "index.html",
32         "index.htm",
33         "default.html",
34         "default.htm"
35 };
36
37
38 const char * sa_straddr(void *sa)
39 {
40         static char str[INET6_ADDRSTRLEN];
41         struct sockaddr_in *v4 = (struct sockaddr_in *)sa;
42         struct sockaddr_in6 *v6 = (struct sockaddr_in6 *)sa;
43
44         if( v4->sin_family == AF_INET )
45                 return inet_ntop(AF_INET, &(v4->sin_addr), str, sizeof(str));
46         else
47                 return inet_ntop(AF_INET6, &(v6->sin6_addr), str, sizeof(str));
48 }
49
50 const char * sa_strport(void *sa)
51 {
52         static char str[6];
53         snprintf(str, sizeof(str), "%i", sa_port(sa));
54         return str;
55 }
56
57 int sa_port(void *sa)
58 {
59         return ntohs(((struct sockaddr_in6 *)sa)->sin6_port);
60 }
61
62 int sa_rfc1918(void *sa)
63 {
64         struct sockaddr_in *v4 = (struct sockaddr_in *)sa;
65         unsigned long a = htonl(v4->sin_addr.s_addr);
66
67         if( v4->sin_family == AF_INET )
68         {
69                 return ((a >= 0x0A000000) && (a <= 0x0AFFFFFF)) ||
70                        ((a >= 0xAC100000) && (a <= 0xAC1FFFFF)) ||
71                        ((a >= 0xC0A80000) && (a <= 0xC0A8FFFF));
72         }
73
74         return 0;
75 }
76
77 /* Simple strstr() like function that takes len arguments for both haystack and needle. */
78 char *strfind(char *haystack, int hslen, const char *needle, int ndlen)
79 {
80         int match = 0;
81         int i, j;
82
83         for( i = 0; i < hslen; i++ )
84         {
85                 if( haystack[i] == needle[0] )
86                 {
87                         match = ((ndlen == 1) || ((i + ndlen) <= hslen));
88
89                         for( j = 1; (j < ndlen) && ((i + j) < hslen); j++ )
90                         {
91                                 if( haystack[i+j] != needle[j] )
92                                 {
93                                         match = 0;
94                                         break;
95                                 }
96                         }
97
98                         if( match )
99                                 return &haystack[i];
100                 }
101         }
102
103         return NULL;
104 }
105
106 /* interruptable select() */
107 int select_intr(int n, fd_set *r, fd_set *w, fd_set *e, struct timeval *t)
108 {
109         int rv;
110         sigset_t ssn, sso;
111
112         /* unblock SIGCHLD */
113         sigemptyset(&ssn);
114         sigaddset(&ssn, SIGCHLD);
115         sigaddset(&ssn, SIGPIPE);
116         sigprocmask(SIG_UNBLOCK, &ssn, &sso);
117
118         rv = select(n, r, w, e, t);
119
120         /* restore signal mask */
121         sigprocmask(SIG_SETMASK, &sso, NULL);
122
123         return rv;
124 }
125
126
127 int uh_tcp_send(struct client *cl, const char *buf, int len)
128 {
129         fd_set writer;
130         struct timeval timeout;
131
132         FD_ZERO(&writer);
133         FD_SET(cl->socket, &writer);
134
135         timeout.tv_sec = cl->server->conf->network_timeout;
136         timeout.tv_usec = 0;
137
138         if( select(cl->socket + 1, NULL, &writer, NULL, &timeout) > 0 )
139         {
140 #ifdef HAVE_TLS
141                 if( cl->tls )
142                         return cl->server->conf->tls_send(cl, (void *)buf, len);
143                 else
144 #endif
145                         return send(cl->socket, buf, len, 0);
146         }
147
148         return -1;
149 }
150
151 int uh_tcp_peek(struct client *cl, char *buf, int len)
152 {
153         int sz = uh_tcp_recv(cl, buf, len);
154
155         /* store received data in peek buffer */
156         if( sz > 0 )
157         {
158                 cl->peeklen = sz;
159                 memcpy(cl->peekbuf, buf, sz);
160         }
161
162         return sz;
163 }
164
165 int uh_tcp_recv(struct client *cl, char *buf, int len)
166 {
167         int sz = 0;
168         int rsz = 0;
169
170         /* first serve data from peek buffer */
171         if( cl->peeklen > 0 )
172         {
173                 sz = min(cl->peeklen, len);
174                 len -= sz; cl->peeklen -= sz;
175
176                 memcpy(buf, cl->peekbuf, sz);
177                 memmove(cl->peekbuf, &cl->peekbuf[sz], cl->peeklen);
178         }
179
180         /* caller wants more */
181         if( len > 0 )
182         {
183 #ifdef HAVE_TLS
184                 if( cl->tls )
185                         rsz = cl->server->conf->tls_recv(cl, (void *)&buf[sz], len);
186                 else
187 #endif
188                         rsz = recv(cl->socket, (void *)&buf[sz], len, 0);
189
190                 if( (sz == 0) || (rsz > 0) )
191                         sz += rsz;
192         }
193
194         return sz;
195 }
196
197
198 int uh_http_sendhf(struct client *cl, int code, const char *summary, const char *fmt, ...)
199 {
200         va_list ap;
201
202         char buffer[UH_LIMIT_MSGHEAD];
203         int len;
204
205         len = snprintf(buffer, sizeof(buffer),
206                 "HTTP/1.1 %03i %s\r\n"
207                 "Connection: close\r\n"
208                 "Content-Type: text/plain\r\n"
209                 "Transfer-Encoding: chunked\r\n\r\n",
210                         code, summary
211         );
212
213         ensure_ret(uh_tcp_send(cl, buffer, len));
214
215         va_start(ap, fmt);
216         len = vsnprintf(buffer, sizeof(buffer), fmt, ap);
217         va_end(ap);
218
219         ensure_ret(uh_http_sendc(cl, buffer, len));
220         ensure_ret(uh_http_sendc(cl, NULL, 0));
221
222         return 0;
223 }
224
225
226 int uh_http_sendc(struct client *cl, const char *data, int len)
227 {
228         char chunk[8];
229         int clen;
230
231         if( len == -1 )
232                 len = strlen(data);
233
234         if( len > 0 )
235         {
236                 clen = snprintf(chunk, sizeof(chunk), "%X\r\n", len);
237                 ensure_ret(uh_tcp_send(cl, chunk, clen));
238                 ensure_ret(uh_tcp_send(cl, data, len));
239                 ensure_ret(uh_tcp_send(cl, "\r\n", 2));
240         }
241         else
242         {
243                 ensure_ret(uh_tcp_send(cl, "0\r\n\r\n", 5));
244         }
245
246         return 0;
247 }
248
249 int uh_http_sendf(
250         struct client *cl, struct http_request *req, const char *fmt, ...
251 ) {
252         va_list ap;
253         char buffer[UH_LIMIT_MSGHEAD];
254         int len;
255
256         va_start(ap, fmt);
257         len = vsnprintf(buffer, sizeof(buffer), fmt, ap);
258         va_end(ap);
259
260         if( (req != NULL) && (req->version > 1.0) )
261                 ensure_ret(uh_http_sendc(cl, buffer, len));
262         else if( len > 0 )
263                 ensure_ret(uh_tcp_send(cl, buffer, len));
264
265         return 0;
266 }
267
268 int uh_http_send(
269         struct client *cl, struct http_request *req, const char *buf, int len
270 ) {
271         if( len < 0 )
272                 len = strlen(buf);
273
274         if( (req != NULL) && (req->version > 1.0) )
275                 ensure_ret(uh_http_sendc(cl, buf, len));
276         else if( len > 0 )
277                 ensure_ret(uh_tcp_send(cl, buf, len));
278
279         return 0;
280 }
281
282
283 int uh_urldecode(char *buf, int blen, const char *src, int slen)
284 {
285         int i;
286         int len = 0;
287
288 #define hex(x) \
289         (((x) <= '9') ? ((x) - '0') : \
290                 (((x) <= 'F') ? ((x) - 'A' + 10) : \
291                         ((x) - 'a' + 10)))
292
293         for( i = 0; (i <= slen) && (i <= blen); i++ )
294         {
295                 if( src[i] == '%' )
296                 {
297                         if( ((i+2) <= slen) && isxdigit(src[i+1]) && isxdigit(src[i+2]) )
298                         {
299                                 buf[len++] = (char)(16 * hex(src[i+1]) + hex(src[i+2]));
300                                 i += 2;
301                         }
302                         else
303                         {
304                                 buf[len++] = '%';
305                         }
306                 }
307                 else
308                 {
309                         buf[len++] = src[i];
310                 }
311         }
312
313         return len;
314 }
315
316 int uh_urlencode(char *buf, int blen, const char *src, int slen)
317 {
318         int i;
319         int len = 0;
320         const char hex[] = "0123456789abcdef";
321
322         for( i = 0; (i <= slen) && (i <= blen); i++ )
323         {
324                 if( isalnum(src[i]) || (src[i] == '-') || (src[i] == '_') ||
325                     (src[i] == '.') || (src[i] == '~') )
326                 {
327                         buf[len++] = src[i];
328                 }
329                 else if( (len+3) <= blen )
330                 {
331                         buf[len++] = '%';
332                         buf[len++] = hex[(src[i] >> 4) & 15];
333                         buf[len++] = hex[(src[i] & 15) & 15];
334                 }
335                 else
336                 {
337                         break;
338                 }
339         }
340
341         return len;
342 }
343
344 int uh_b64decode(char *buf, int blen, const unsigned char *src, int slen)
345 {
346         int i = 0;
347         int len = 0;
348
349         unsigned int cin  = 0;
350         unsigned int cout = 0;
351
352
353         for( i = 0; (i <= slen) && (src[i] != 0); i++ )
354         {
355                 cin = src[i];
356
357                 if( (cin >= '0') && (cin <= '9') )
358                         cin = cin - '0' + 52;
359                 else if( (cin >= 'A') && (cin <= 'Z') )
360                         cin = cin - 'A';
361                 else if( (cin >= 'a') && (cin <= 'z') )
362                         cin = cin - 'a' + 26;
363                 else if( cin == '+' )
364                         cin = 62;
365                 else if( cin == '/' )
366                         cin = 63;
367                 else if( cin == '=' )
368                         cin = 0;
369                 else
370                         continue;
371
372                 cout = (cout << 6) | cin;
373
374                 if( (i % 4) == 3 )
375                 {
376                         if( (len + 3) < blen )
377                         {
378                                 buf[len++] = (char)(cout >> 16);
379                                 buf[len++] = (char)(cout >> 8);
380                                 buf[len++] = (char)(cout);
381                         }
382                         else
383                         {
384                                 break;
385                         }
386                 }
387         }
388
389         buf[len++] = 0;
390         return len;
391 }
392
393 static char * canonpath(const char *path, char *path_resolved)
394 {
395         char path_copy[PATH_MAX];
396         char *path_cpy = path_copy;
397         char *path_res = path_resolved;
398
399         struct stat s;
400
401
402         /* relative -> absolute */
403         if( *path != '/' )
404         {
405                 getcwd(path_copy, PATH_MAX);
406                 strncat(path_copy, "/", PATH_MAX - strlen(path_copy));
407                 strncat(path_copy, path, PATH_MAX - strlen(path_copy));
408         }
409         else
410         {
411                 strncpy(path_copy, path, PATH_MAX);
412         }
413
414         /* normalize */
415         while( (*path_cpy != '\0') && (path_cpy < (path_copy + PATH_MAX - 2)) )
416         {
417                 if( *path_cpy == '/' )
418                 {
419                         /* skip repeating / */
420                         if( path_cpy[1] == '/' )
421                         {
422                                 path_cpy++;
423                                 continue;
424                         }
425
426                         /* /./ or /../ */
427                         else if( path_cpy[1] == '.' )
428                         {
429                                 /* skip /./ */
430                                 if( (path_cpy[2] == '/') || (path_cpy[2] == '\0') )
431                                 {
432                                         path_cpy += 2;
433                                         continue;
434                                 }
435
436                                 /* collapse /x/../ */
437                                 else if( (path_cpy[2] == '.') &&
438                                          ((path_cpy[3] == '/') || (path_cpy[3] == '\0'))
439                                 ) {
440                                         while( (path_res > path_resolved) && (*--path_res != '/') )
441                                                 ;
442
443                                         path_cpy += 3;
444                                         continue;
445                                 }
446                         }
447                 }
448
449                 *path_res++ = *path_cpy++;
450         }
451
452         /* remove trailing slash if not root / */
453         if( (path_res > (path_resolved+1)) && (path_res[-1] == '/') )
454                 path_res--;
455         else if( path_res == path_resolved )
456                 *path_res++ = '/';
457
458         *path_res = '\0';
459
460         /* test access */
461         if( !stat(path_resolved, &s) && (s.st_mode & S_IROTH) )
462                 return path_resolved;
463
464         return NULL;
465 }
466
467 struct path_info * uh_path_lookup(struct client *cl, const char *url)
468 {
469         static char path_phys[PATH_MAX];
470         static char path_info[PATH_MAX];
471         static struct path_info p;
472
473         char buffer[UH_LIMIT_MSGHEAD];
474         char *docroot = cl->server->conf->docroot;
475         char *pathptr = NULL;
476
477         int slash = 0;
478         int no_sym = cl->server->conf->no_symlinks;
479         int i = 0;
480         struct stat s;
481
482         /* back out early if url is undefined */
483         if ( url == NULL )
484                 return NULL;
485
486         memset(path_phys, 0, sizeof(path_phys));
487         memset(path_info, 0, sizeof(path_info));
488         memset(buffer, 0, sizeof(buffer));
489         memset(&p, 0, sizeof(p));
490
491         /* copy docroot */
492         memcpy(buffer, docroot,
493                 min(strlen(docroot), sizeof(buffer) - 1));
494
495         /* separate query string from url */
496         if( (pathptr = strchr(url, '?')) != NULL )
497         {
498                 p.query = pathptr[1] ? pathptr + 1 : NULL;
499
500                 /* urldecode component w/o query */
501                 if( pathptr > url )
502                         uh_urldecode(
503                                 &buffer[strlen(docroot)],
504                                 sizeof(buffer) - strlen(docroot) - 1,
505                                 url, (int)(pathptr - url) - 1
506                         );
507         }
508
509         /* no query string, decode all of url */
510         else
511         {
512                 uh_urldecode(
513                         &buffer[strlen(docroot)],
514                         sizeof(buffer) - strlen(docroot) - 1,
515                         url, strlen(url)
516                 );
517         }
518
519         /* create canon path */
520         for( i = strlen(buffer), slash = (buffer[max(0, i-1)] == '/'); i >= 0; i-- )
521         {
522                 if( (buffer[i] == 0) || (buffer[i] == '/') )
523                 {
524                         memset(path_info, 0, sizeof(path_info));
525                         memcpy(path_info, buffer, min(i + 1, sizeof(path_info) - 1));
526
527                         if( no_sym ? realpath(path_info, path_phys)
528                                    : canonpath(path_info, path_phys)
529                         ) {
530                                 memset(path_info, 0, sizeof(path_info));
531                                 memcpy(path_info, &buffer[i],
532                                         min(strlen(buffer) - i, sizeof(path_info) - 1));
533
534                                 break;
535                         }
536                 }
537         }
538
539         /* check whether found path is within docroot */
540         if( strncmp(path_phys, docroot, strlen(docroot)) ||
541             ((path_phys[strlen(docroot)] != 0) &&
542                  (path_phys[strlen(docroot)] != '/'))
543         ) {
544                 return NULL;
545         }
546
547         /* test current path */
548         if( ! stat(path_phys, &p.stat) )
549         {
550                 /* is a regular file */
551                 if( p.stat.st_mode & S_IFREG )
552                 {
553                         p.root = docroot;
554                         p.phys = path_phys;
555                         p.name = &path_phys[strlen(docroot)];
556                         p.info = path_info[0] ? path_info : NULL;
557                 }
558
559                 /* is a directory */
560                 else if( (p.stat.st_mode & S_IFDIR) && !strlen(path_info) )
561                 {
562                         /* ensure trailing slash */
563                         if( path_phys[strlen(path_phys)-1] != '/' )
564                                 path_phys[strlen(path_phys)] = '/';
565
566                         /* try to locate index file */
567                         memset(buffer, 0, sizeof(buffer));
568                         memcpy(buffer, path_phys, sizeof(buffer));
569                         pathptr = &buffer[strlen(buffer)];
570
571                         /* if requested url resolves to a directory and a trailing slash
572                            is missing in the request url, redirect the client to the same
573                            url with trailing slash appended */
574                         if( !slash )
575                         {
576                                 uh_http_sendf(cl, NULL,
577                                         "HTTP/1.1 302 Found\r\n"
578                                         "Location: %s%s%s\r\n"
579                                         "Connection: close\r\n\r\n",
580                                                 &path_phys[strlen(docroot)],
581                                                 p.query ? "?" : "",
582                                                 p.query ? p.query : ""
583                                 );
584
585                                 p.redirected = 1;
586                         }
587                         else if( cl->server->conf->index_file )
588                         {
589                                 strncat(buffer, cl->server->conf->index_file, sizeof(buffer));
590
591                                 if( !stat(buffer, &s) && (s.st_mode & S_IFREG) )
592                                 {
593                                         memcpy(path_phys, buffer, sizeof(path_phys));
594                                         memcpy(&p.stat, &s, sizeof(p.stat));
595                                 }
596                         }
597                         else
598                         {
599                                 for( i = 0; i < array_size(uh_index_files); i++ )
600                                 {
601                                         strncat(buffer, uh_index_files[i], sizeof(buffer));
602
603                                         if( !stat(buffer, &s) && (s.st_mode & S_IFREG) )
604                                         {
605                                                 memcpy(path_phys, buffer, sizeof(path_phys));
606                                                 memcpy(&p.stat, &s, sizeof(p.stat));
607                                                 break;
608                                         }
609
610                                         *pathptr = 0;
611                                 }
612                         }
613
614                         p.root = docroot;
615                         p.phys = path_phys;
616                         p.name = &path_phys[strlen(docroot)];
617                 }
618         }
619
620         return p.phys ? &p : NULL;
621 }
622
623
624 static struct auth_realm *uh_realms = NULL;
625
626 struct auth_realm * uh_auth_add(char *path, char *user, char *pass)
627 {
628         struct auth_realm *new = NULL;
629         struct passwd *pwd;
630
631 #ifdef HAVE_SHADOW
632         struct spwd *spwd;
633 #endif
634
635         if((new = (struct auth_realm *)malloc(sizeof(struct auth_realm))) != NULL)
636         {
637                 memset(new, 0, sizeof(struct auth_realm));
638
639                 memcpy(new->path, path,
640                         min(strlen(path), sizeof(new->path) - 1));
641
642                 memcpy(new->user, user,
643                         min(strlen(user), sizeof(new->user) - 1));
644
645                 /* given password refers to a passwd entry */
646                 if( (strlen(pass) > 3) && !strncmp(pass, "$p$", 3) )
647                 {
648 #ifdef HAVE_SHADOW
649                         /* try to resolve shadow entry */
650                         if( ((spwd = getspnam(&pass[3])) != NULL) && spwd->sp_pwdp )
651                         {
652                                 memcpy(new->pass, spwd->sp_pwdp,
653                                         min(strlen(spwd->sp_pwdp), sizeof(new->pass) - 1));
654                         }
655
656                         else
657 #endif
658
659                         /* try to resolve passwd entry */
660                         if( ((pwd = getpwnam(&pass[3])) != NULL) && pwd->pw_passwd &&
661                                 (pwd->pw_passwd[0] != '!') && (pwd->pw_passwd[0] != 0)
662                         ) {
663                                 memcpy(new->pass, pwd->pw_passwd,
664                                         min(strlen(pwd->pw_passwd), sizeof(new->pass) - 1));
665                         }
666                 }
667
668                 /* ordinary pwd */
669                 else
670                 {
671                         memcpy(new->pass, pass,
672                                 min(strlen(pass), sizeof(new->pass) - 1));
673                 }
674
675                 if( new->pass[0] )
676                 {
677                         new->next = uh_realms;
678                         uh_realms = new;
679
680                         return new;
681                 }
682
683                 free(new);
684         }
685
686         return NULL;
687 }
688
689 int uh_auth_check(
690         struct client *cl, struct http_request *req, struct path_info *pi
691 ) {
692         int i, plen, rlen, protected;
693         char buffer[UH_LIMIT_MSGHEAD];
694         char *user = NULL;
695         char *pass = NULL;
696
697         struct auth_realm *realm = NULL;
698
699         plen = strlen(pi->name);
700         protected = 0;
701
702         /* check whether at least one realm covers the requested url */
703         for( realm = uh_realms; realm; realm = realm->next )
704         {
705                 rlen = strlen(realm->path);
706
707                 if( (plen >= rlen) && !strncasecmp(pi->name, realm->path, rlen) )
708                 {
709                         req->realm = realm;
710                         protected = 1;
711                         break;
712                 }
713         }
714
715         /* requested resource is covered by a realm */
716         if( protected )
717         {
718                 /* try to get client auth info */
719                 foreach_header(i, req->headers)
720                 {
721                         if( !strcasecmp(req->headers[i], "Authorization") &&
722                                 (strlen(req->headers[i+1]) > 6) &&
723                                 !strncasecmp(req->headers[i+1], "Basic ", 6)
724                         ) {
725                                 memset(buffer, 0, sizeof(buffer));
726                                 uh_b64decode(buffer, sizeof(buffer) - 1,
727                                         (unsigned char *) &req->headers[i+1][6],
728                                         strlen(req->headers[i+1]) - 6);
729
730                                 if( (pass = strchr(buffer, ':')) != NULL )
731                                 {
732                                         user = buffer;
733                                         *pass++ = 0;
734                                 }
735
736                                 break;
737                         }
738                 }
739
740                 /* have client auth */
741                 if( user && pass )
742                 {
743                         /* find matching realm */
744                         for( realm = uh_realms; realm; realm = realm->next )
745                         {
746                                 rlen = strlen(realm->path);
747
748                                 if( (plen >= rlen) &&
749                                     !strncasecmp(pi->name, realm->path, rlen) &&
750                                     !strcmp(user, realm->user)
751                                 ) {
752                                         req->realm = realm;
753                                         break;
754                                 }
755                         }
756
757                         /* found a realm matching the username */
758                         if( realm )
759                         {
760                                 /* is a crypt passwd */
761                                 if( realm->pass[0] == '$' )
762                                         pass = crypt(pass, realm->pass);
763
764                                 /* check user pass */
765                                 if( !strcmp(pass, realm->pass) )
766                                         return 1;
767                         }
768                 }
769
770                 /* 401 */
771                 uh_http_sendf(cl, NULL,
772                         "HTTP/%.1f 401 Authorization Required\r\n"
773                         "WWW-Authenticate: Basic realm=\"%s\"\r\n"
774                         "Content-Type: text/plain\r\n"
775                         "Content-Length: 23\r\n\r\n"
776                         "Authorization Required\n",
777                                 req->version, cl->server->conf->realm
778                 );
779
780                 return 0;
781         }
782
783         return 1;
784 }
785
786
787 static struct listener *uh_listeners = NULL;
788 static struct client *uh_clients = NULL;
789
790 struct listener * uh_listener_add(int sock, struct config *conf)
791 {
792         struct listener *new = NULL;
793         socklen_t sl;
794
795         if( (new = (struct listener *)malloc(sizeof(struct listener))) != NULL )
796         {
797                 memset(new, 0, sizeof(struct listener));
798
799                 new->socket = sock;
800                 new->conf   = conf;
801
802                 /* get local endpoint addr */
803                 sl = sizeof(struct sockaddr_in6);
804                 memset(&(new->addr), 0, sl);
805                 getsockname(sock, (struct sockaddr *) &(new->addr), &sl);
806
807                 new->next = uh_listeners;
808                 uh_listeners = new;
809
810                 return new;
811         }
812
813         return NULL;
814 }
815
816 struct listener * uh_listener_lookup(int sock)
817 {
818         struct listener *cur = NULL;
819
820         for( cur = uh_listeners; cur; cur = cur->next )
821                 if( cur->socket == sock )
822                         return cur;
823
824         return NULL;
825 }
826
827
828 struct client * uh_client_add(int sock, struct listener *serv)
829 {
830         struct client *new = NULL;
831         socklen_t sl;
832
833         if( (new = (struct client *)malloc(sizeof(struct client))) != NULL )
834         {
835                 memset(new, 0, sizeof(struct client));
836
837                 new->socket = sock;
838                 new->server = serv;
839
840                 /* get remote endpoint addr */
841                 sl = sizeof(struct sockaddr_in6);
842                 memset(&(new->peeraddr), 0, sl);
843                 getpeername(sock, (struct sockaddr *) &(new->peeraddr), &sl);
844
845                 /* get local endpoint addr */
846                 sl = sizeof(struct sockaddr_in6);
847                 memset(&(new->servaddr), 0, sl);
848                 getsockname(sock, (struct sockaddr *) &(new->servaddr), &sl);
849
850                 new->next = uh_clients;
851                 uh_clients = new;
852         }
853
854         return new;
855 }
856
857 struct client * uh_client_lookup(int sock)
858 {
859         struct client *cur = NULL;
860
861         for( cur = uh_clients; cur; cur = cur->next )
862                 if( cur->socket == sock )
863                         return cur;
864
865         return NULL;
866 }
867
868 void uh_client_remove(int sock)
869 {
870         struct client *cur = NULL;
871         struct client *prv = NULL;
872
873         for( cur = uh_clients; cur; prv = cur, cur = cur->next )
874         {
875                 if( cur->socket == sock )
876                 {
877                         if( prv )
878                                 prv->next = cur->next;
879                         else
880                                 uh_clients = cur->next;
881
882                         free(cur);
883                         break;
884                 }
885         }
886 }
887
888
889 #ifdef HAVE_CGI
890 static struct interpreter *uh_interpreters = NULL;
891
892 struct interpreter * uh_interpreter_add(const char *extn, const char *path)
893 {
894         struct interpreter *new = NULL;
895
896         if( (new = (struct interpreter *)
897                         malloc(sizeof(struct interpreter))) != NULL )
898         {
899                 memset(new, 0, sizeof(struct interpreter));
900
901                 memcpy(new->extn, extn, min(strlen(extn), sizeof(new->extn)-1));
902                 memcpy(new->path, path, min(strlen(path), sizeof(new->path)-1));
903
904                 new->next = uh_interpreters;
905                 uh_interpreters = new;
906
907                 return new;
908         }
909
910         return NULL;
911 }
912
913 struct interpreter * uh_interpreter_lookup(const char *path)
914 {
915         struct interpreter *cur = NULL;
916         const char *e;
917
918         for( cur = uh_interpreters; cur; cur = cur->next )
919         {
920                 e = &path[max(strlen(path) - strlen(cur->extn), 0)];
921
922                 if( !strcmp(e, cur->extn) )
923                         return cur;
924         }
925
926         return NULL;
927 }
928 #endif