RT3544: Restore MWERKS for NetWare
[openssl.git] / crypto / bio / b_sock.c
1 /* crypto/bio/b_sock.c */
2 /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
3  * All rights reserved.
4  *
5  * This package is an SSL implementation written
6  * by Eric Young (eay@cryptsoft.com).
7  * The implementation was written so as to conform with Netscapes SSL.
8  * 
9  * This library is free for commercial and non-commercial use as long as
10  * the following conditions are aheared to.  The following conditions
11  * apply to all code found in this distribution, be it the RC4, RSA,
12  * lhash, DES, etc., code; not just the SSL code.  The SSL documentation
13  * included with this distribution is covered by the same copyright terms
14  * except that the holder is Tim Hudson (tjh@cryptsoft.com).
15  * 
16  * Copyright remains Eric Young's, and as such any Copyright notices in
17  * the code are not to be removed.
18  * If this package is used in a product, Eric Young should be given attribution
19  * as the author of the parts of the library used.
20  * This can be in the form of a textual message at program startup or
21  * in documentation (online or textual) provided with the package.
22  * 
23  * Redistribution and use in source and binary forms, with or without
24  * modification, are permitted provided that the following conditions
25  * are met:
26  * 1. Redistributions of source code must retain the copyright
27  *    notice, this list of conditions and the following disclaimer.
28  * 2. Redistributions in binary form must reproduce the above copyright
29  *    notice, this list of conditions and the following disclaimer in the
30  *    documentation and/or other materials provided with the distribution.
31  * 3. All advertising materials mentioning features or use of this software
32  *    must display the following acknowledgement:
33  *    "This product includes cryptographic software written by
34  *     Eric Young (eay@cryptsoft.com)"
35  *    The word 'cryptographic' can be left out if the rouines from the library
36  *    being used are not cryptographic related :-).
37  * 4. If you include any Windows specific code (or a derivative thereof) from 
38  *    the apps directory (application code) you must include an acknowledgement:
39  *    "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
40  * 
41  * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
42  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
43  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
44  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
45  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
46  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
47  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
48  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
49  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
50  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
51  * SUCH DAMAGE.
52  * 
53  * The licence and distribution terms for any publically available version or
54  * derivative of this code cannot be changed.  i.e. this code cannot simply be
55  * copied and put under another distribution licence
56  * [including the GNU Public Licence.]
57  */
58
59 #include <stdio.h>
60 #include <stdlib.h>
61 #include <errno.h>
62 #define USE_SOCKETS
63 #include "cryptlib.h"
64 #include <openssl/bio.h>
65 #if defined(OPENSSL_SYS_NETWARE) && defined(NETWARE_BSDSOCK)
66 #include <netdb.h>
67 #if defined(NETWARE_CLIB)
68 #include <sys/ioctl.h>
69 NETDB_DEFINE_CONTEXT
70 #endif
71 #endif
72
73 #ifndef OPENSSL_NO_SOCK
74
75 #include <openssl/dso.h>
76
77 #define SOCKET_PROTOCOL IPPROTO_TCP
78
79 #ifdef SO_MAXCONN
80 #define MAX_LISTEN  SO_MAXCONN
81 #elif defined(SOMAXCONN)
82 #define MAX_LISTEN  SOMAXCONN
83 #else
84 #define MAX_LISTEN  32
85 #endif
86
87 #if defined(OPENSSL_SYS_WINDOWS) || (defined(OPENSSL_SYS_NETWARE) && !defined(NETWARE_BSDSOCK))
88 static int wsa_init_done=0;
89 #endif
90
91 /*
92  * WSAAPI specifier is required to make indirect calls to run-time
93  * linked WinSock 2 functions used in this module, to be specific
94  * [get|free]addrinfo and getnameinfo. This is because WinSock uses
95  * uses non-C calling convention, __stdcall vs. __cdecl, on x86
96  * Windows. On non-WinSock platforms WSAAPI needs to be void.
97  */
98 #ifndef WSAAPI
99 #define WSAAPI
100 #endif
101
102 #if 0
103 static unsigned long BIO_ghbn_hits=0L;
104 static unsigned long BIO_ghbn_miss=0L;
105
106 #define GHBN_NUM        4
107 static struct ghbn_cache_st
108         {
109         char name[129];
110         struct hostent *ent;
111         unsigned long order;
112         } ghbn_cache[GHBN_NUM];
113 #endif
114
115 static int get_ip(const char *str,unsigned char *ip);
116 #if 0
117 static void ghbn_free(struct hostent *a);
118 static struct hostent *ghbn_dup(struct hostent *a);
119 #endif
120 int BIO_get_host_ip(const char *str, unsigned char *ip)
121         {
122         int i;
123         int err = 1;
124         int locked = 0;
125         struct hostent *he;
126
127         i=get_ip(str,ip);
128         if (i < 0)
129                 {
130                 BIOerr(BIO_F_BIO_GET_HOST_IP,BIO_R_INVALID_IP_ADDRESS);
131                 goto err;
132                 }
133
134         /* At this point, we have something that is most probably correct
135            in some way, so let's init the socket. */
136         if (BIO_sock_init() != 1)
137                 return 0; /* don't generate another error code here */
138
139         /* If the string actually contained an IP address, we need not do
140            anything more */
141         if (i > 0) return(1);
142
143         /* do a gethostbyname */
144         CRYPTO_w_lock(CRYPTO_LOCK_GETHOSTBYNAME);
145         locked = 1;
146         he=BIO_gethostbyname(str);
147         if (he == NULL)
148                 {
149                 BIOerr(BIO_F_BIO_GET_HOST_IP,BIO_R_BAD_HOSTNAME_LOOKUP);
150                 goto err;
151                 }
152
153         /* cast to short because of win16 winsock definition */
154         if ((short)he->h_addrtype != AF_INET)
155                 {
156                 BIOerr(BIO_F_BIO_GET_HOST_IP,BIO_R_GETHOSTBYNAME_ADDR_IS_NOT_AF_INET);
157                 goto err;
158                 }
159         for (i=0; i<4; i++)
160                 ip[i]=he->h_addr_list[0][i];
161         err = 0;
162
163  err:
164         if (locked)
165                 CRYPTO_w_unlock(CRYPTO_LOCK_GETHOSTBYNAME);
166         if (err)
167                 {
168                 ERR_add_error_data(2,"host=",str);
169                 return 0;
170                 }
171         else
172                 return 1;
173         }
174
175 int BIO_get_port(const char *str, unsigned short *port_ptr)
176         {
177         int i;
178         struct servent *s;
179
180         if (str == NULL)
181                 {
182                 BIOerr(BIO_F_BIO_GET_PORT,BIO_R_NO_PORT_DEFINED);
183                 return(0);
184                 }
185         i=atoi(str);
186         if (i != 0)
187                 *port_ptr=(unsigned short)i;
188         else
189                 {
190                 CRYPTO_w_lock(CRYPTO_LOCK_GETSERVBYNAME);
191                 /* Note: under VMS with SOCKETSHR, it seems like the first
192                  * parameter is 'char *', instead of 'const char *'
193                  */
194 #ifndef CONST_STRICT
195                 s=getservbyname((char *)str,"tcp");
196 #else
197                 s=getservbyname(str,"tcp");
198 #endif
199                 if(s != NULL)
200                         *port_ptr=ntohs((unsigned short)s->s_port);
201                 CRYPTO_w_unlock(CRYPTO_LOCK_GETSERVBYNAME);
202                 if(s == NULL)
203                         {
204                         if (strcmp(str,"http") == 0)
205                                 *port_ptr=80;
206                         else if (strcmp(str,"telnet") == 0)
207                                 *port_ptr=23;
208                         else if (strcmp(str,"socks") == 0)
209                                 *port_ptr=1080;
210                         else if (strcmp(str,"https") == 0)
211                                 *port_ptr=443;
212                         else if (strcmp(str,"ssl") == 0)
213                                 *port_ptr=443;
214                         else if (strcmp(str,"ftp") == 0)
215                                 *port_ptr=21;
216                         else if (strcmp(str,"gopher") == 0)
217                                 *port_ptr=70;
218 #if 0
219                         else if (strcmp(str,"wais") == 0)
220                                 *port_ptr=21;
221 #endif
222                         else
223                                 {
224                                 SYSerr(SYS_F_GETSERVBYNAME,get_last_socket_error());
225                                 ERR_add_error_data(3,"service='",str,"'");
226                                 return(0);
227                                 }
228                         }
229                 }
230         return(1);
231         }
232
233 int BIO_sock_error(int sock)
234         {
235         int j,i;
236         union { size_t s; int i; } size;
237                  
238 #if defined(OPENSSL_SYS_BEOS_R5)
239         return 0;
240 #endif
241  
242         /* heuristic way to adapt for platforms that expect 64-bit optlen */
243         size.s=0, size.i=sizeof(j);
244         /* Note: under Windows the third parameter is of type (char *)
245          * whereas under other systems it is (void *) if you don't have
246          * a cast it will choke the compiler: if you do have a cast then
247          * you can either go for (char *) or (void *).
248          */
249         i=getsockopt(sock,SOL_SOCKET,SO_ERROR,(void *)&j,(void *)&size);
250         if (i < 0)
251                 return(1);
252         else
253                 return(j);
254         }
255
256 #if 0
257 long BIO_ghbn_ctrl(int cmd, int iarg, char *parg)
258         {
259         int i;
260         char **p;
261
262         switch (cmd)
263                 {
264         case BIO_GHBN_CTRL_HITS:
265                 return(BIO_ghbn_hits);
266                 /* break; */
267         case BIO_GHBN_CTRL_MISSES:
268                 return(BIO_ghbn_miss);
269                 /* break; */
270         case BIO_GHBN_CTRL_CACHE_SIZE:
271                 return(GHBN_NUM);
272                 /* break; */
273         case BIO_GHBN_CTRL_GET_ENTRY:
274                 if ((iarg >= 0) && (iarg <GHBN_NUM) &&
275                         (ghbn_cache[iarg].order > 0))
276                         {
277                         p=(char **)parg;
278                         if (p == NULL) return(0);
279                         *p=ghbn_cache[iarg].name;
280                         ghbn_cache[iarg].name[128]='\0';
281                         return(1);
282                         }
283                 return(0);
284                 /* break; */
285         case BIO_GHBN_CTRL_FLUSH:
286                 for (i=0; i<GHBN_NUM; i++)
287                         ghbn_cache[i].order=0;
288                 break;
289         default:
290                 return(0);
291                 }
292         return(1);
293         }
294 #endif
295
296 #if 0
297 static struct hostent *ghbn_dup(struct hostent *a)
298         {
299         struct hostent *ret;
300         int i,j;
301
302         MemCheck_off();
303         ret=(struct hostent *)OPENSSL_malloc(sizeof(struct hostent));
304         if (ret == NULL) return(NULL);
305         memset(ret,0,sizeof(struct hostent));
306
307         for (i=0; a->h_aliases[i] != NULL; i++)
308                 ;
309         i++;
310         ret->h_aliases = (char **)OPENSSL_malloc(i*sizeof(char *));
311         if (ret->h_aliases == NULL)
312                 goto err;
313         memset(ret->h_aliases, 0, i*sizeof(char *));
314
315         for (i=0; a->h_addr_list[i] != NULL; i++)
316                 ;
317         i++;
318         ret->h_addr_list=(char **)OPENSSL_malloc(i*sizeof(char *));
319         if (ret->h_addr_list == NULL)
320                 goto err;
321         memset(ret->h_addr_list, 0, i*sizeof(char *));
322
323         j=strlen(a->h_name)+1;
324         if ((ret->h_name=OPENSSL_malloc(j)) == NULL) goto err;
325         memcpy((char *)ret->h_name,a->h_name,j);
326         for (i=0; a->h_aliases[i] != NULL; i++)
327                 {
328                 j=strlen(a->h_aliases[i])+1;
329                 if ((ret->h_aliases[i]=OPENSSL_malloc(j)) == NULL) goto err;
330                 memcpy(ret->h_aliases[i],a->h_aliases[i],j);
331                 }
332         ret->h_length=a->h_length;
333         ret->h_addrtype=a->h_addrtype;
334         for (i=0; a->h_addr_list[i] != NULL; i++)
335                 {
336                 if ((ret->h_addr_list[i]=OPENSSL_malloc(a->h_length)) == NULL)
337                         goto err;
338                 memcpy(ret->h_addr_list[i],a->h_addr_list[i],a->h_length);
339                 }
340         if (0)
341                 {
342 err:    
343                 if (ret != NULL)
344                         ghbn_free(ret);
345                 ret=NULL;
346                 }
347         MemCheck_on();
348         return(ret);
349         }
350
351 static void ghbn_free(struct hostent *a)
352         {
353         int i;
354
355         if(a == NULL)
356             return;
357
358         if (a->h_aliases != NULL)
359                 {
360                 for (i=0; a->h_aliases[i] != NULL; i++)
361                         OPENSSL_free(a->h_aliases[i]);
362                 OPENSSL_free(a->h_aliases);
363                 }
364         if (a->h_addr_list != NULL)
365                 {
366                 for (i=0; a->h_addr_list[i] != NULL; i++)
367                         OPENSSL_free(a->h_addr_list[i]);
368                 OPENSSL_free(a->h_addr_list);
369                 }
370         if (a->h_name != NULL) OPENSSL_free(a->h_name);
371         OPENSSL_free(a);
372         }
373
374 #endif
375
376 struct hostent *BIO_gethostbyname(const char *name)
377         {
378 #if 1
379         /* Caching gethostbyname() results forever is wrong,
380          * so we have to let the true gethostbyname() worry about this */
381 #if (defined(NETWARE_BSDSOCK) && !defined(__NOVELL_LIBC__))
382         return gethostbyname((char*)name);
383 #else
384         return gethostbyname(name);
385 #endif
386 #else
387         struct hostent *ret;
388         int i,lowi=0,j;
389         unsigned long low= (unsigned long)-1;
390
391
392 #  if 0
393         /* It doesn't make sense to use locking here: The function interface
394          * is not thread-safe, because threads can never be sure when
395          * some other thread destroys the data they were given a pointer to.
396          */
397         CRYPTO_w_lock(CRYPTO_LOCK_GETHOSTBYNAME);
398 #  endif
399         j=strlen(name);
400         if (j < 128)
401                 {
402                 for (i=0; i<GHBN_NUM; i++)
403                         {
404                         if (low > ghbn_cache[i].order)
405                                 {
406                                 low=ghbn_cache[i].order;
407                                 lowi=i;
408                                 }
409                         if (ghbn_cache[i].order > 0)
410                                 {
411                                 if (strncmp(name,ghbn_cache[i].name,128) == 0)
412                                         break;
413                                 }
414                         }
415                 }
416         else
417                 i=GHBN_NUM;
418
419         if (i == GHBN_NUM) /* no hit*/
420                 {
421                 BIO_ghbn_miss++;
422                 /* Note: under VMS with SOCKETSHR, it seems like the first
423                  * parameter is 'char *', instead of 'const char *'
424                  */
425 #  ifndef CONST_STRICT
426                 ret=gethostbyname((char *)name);
427 #  else
428                 ret=gethostbyname(name);
429 #  endif
430
431                 if (ret == NULL)
432                         goto end;
433                 if (j > 128) /* too big to cache */
434                         {
435 #  if 0
436                         /* If we were trying to make this function thread-safe (which
437                          * is bound to fail), we'd have to give up in this case
438                          * (or allocate more memory). */
439                         ret = NULL;
440 #  endif
441                         goto end;
442                         }
443
444                 /* else add to cache */
445                 if (ghbn_cache[lowi].ent != NULL)
446                         ghbn_free(ghbn_cache[lowi].ent); /* XXX not thread-safe */
447                 ghbn_cache[lowi].name[0] = '\0';
448
449                 if((ret=ghbn_cache[lowi].ent=ghbn_dup(ret)) == NULL)
450                         {
451                         BIOerr(BIO_F_BIO_GETHOSTBYNAME,ERR_R_MALLOC_FAILURE);
452                         goto end;
453                         }
454                 strncpy(ghbn_cache[lowi].name,name,128);
455                 ghbn_cache[lowi].order=BIO_ghbn_miss+BIO_ghbn_hits;
456                 }
457         else
458                 {
459                 BIO_ghbn_hits++;
460                 ret= ghbn_cache[i].ent;
461                 ghbn_cache[i].order=BIO_ghbn_miss+BIO_ghbn_hits;
462                 }
463 end:
464 #  if 0
465         CRYPTO_w_unlock(CRYPTO_LOCK_GETHOSTBYNAME);
466 #  endif
467         return(ret);
468 #endif
469         }
470
471
472 int BIO_sock_init(void)
473         {
474 #ifdef OPENSSL_SYS_WINDOWS
475         static struct WSAData wsa_state;
476
477         if (!wsa_init_done)
478                 {
479                 int err;
480           
481                 wsa_init_done=1;
482                 memset(&wsa_state,0,sizeof(wsa_state));
483                 /* Not making wsa_state available to the rest of the
484                  * code is formally wrong. But the structures we use
485                  * are [beleived to be] invariable among Winsock DLLs,
486                  * while API availability is [expected to be] probed
487                  * at run-time with DSO_global_lookup. */
488                 if (WSAStartup(0x0202,&wsa_state)!=0)
489                         {
490                         err=WSAGetLastError();
491                         SYSerr(SYS_F_WSASTARTUP,err);
492                         BIOerr(BIO_F_BIO_SOCK_INIT,BIO_R_WSASTARTUP);
493                         return(-1);
494                         }
495                 }
496 #endif /* OPENSSL_SYS_WINDOWS */
497 #ifdef WATT32
498         extern int _watt_do_exit;
499         _watt_do_exit = 0;    /* don't make sock_init() call exit() */
500         if (sock_init())
501                 return (-1);
502 #endif
503
504 #if defined(OPENSSL_SYS_NETWARE) && !defined(NETWARE_BSDSOCK)
505     WORD wVerReq;
506     WSADATA wsaData;
507     int err;
508
509     if (!wsa_init_done)
510     {
511         wsa_init_done=1;
512         wVerReq = MAKEWORD( 2, 0 );
513         err = WSAStartup(wVerReq,&wsaData);
514         if (err != 0)
515         {
516             SYSerr(SYS_F_WSASTARTUP,err);
517             BIOerr(BIO_F_BIO_SOCK_INIT,BIO_R_WSASTARTUP);
518             return(-1);
519                         }
520                 }
521 #endif
522
523         return(1);
524         }
525
526 void BIO_sock_cleanup(void)
527         {
528 #ifdef OPENSSL_SYS_WINDOWS
529         if (wsa_init_done)
530                 {
531                 wsa_init_done=0;
532 #if 0           /* this call is claimed to be non-present in Winsock2 */
533                 WSACancelBlockingCall();
534 #endif
535                 WSACleanup();
536                 }
537 #elif defined(OPENSSL_SYS_NETWARE) && !defined(NETWARE_BSDSOCK)
538    if (wsa_init_done)
539         {
540         wsa_init_done=0;
541         WSACleanup();
542                 }
543 #endif
544         }
545
546 #if !defined(OPENSSL_SYS_VMS) || __VMS_VER >= 70000000
547
548 int BIO_socket_ioctl(int fd, long type, void *arg)
549         {
550         int i;
551
552 #ifdef __DJGPP__
553         i=ioctlsocket(fd,type,(char *)arg);
554 #else
555 # if defined(OPENSSL_SYS_VMS)
556         /* 2011-02-18 SMS.
557          * VMS ioctl() can't tolerate a 64-bit "void *arg", but we
558          * observe that all the consumers pass in an "unsigned long *",
559          * so we arrange a local copy with a short pointer, and use
560          * that, instead.
561          */
562 #  if __INITIAL_POINTER_SIZE == 64
563 #   define ARG arg_32p
564 #   pragma pointer_size save
565 #   pragma pointer_size 32
566         unsigned long arg_32;
567         unsigned long *arg_32p;
568 #   pragma pointer_size restore
569         arg_32p = &arg_32;
570         arg_32 = *((unsigned long *) arg);
571 #  else /* __INITIAL_POINTER_SIZE == 64 */
572 #   define ARG arg
573 #  endif /* __INITIAL_POINTER_SIZE == 64 [else] */
574 # else /* defined(OPENSSL_SYS_VMS) */
575 #  define ARG arg
576 # endif /* defined(OPENSSL_SYS_VMS) [else] */
577
578         i=ioctlsocket(fd,type,ARG);
579 #endif /* __DJGPP__ */
580         if (i < 0)
581                 SYSerr(SYS_F_IOCTLSOCKET,get_last_socket_error());
582         return(i);
583         }
584 #endif /* __VMS_VER */
585
586 /* The reason I have implemented this instead of using sscanf is because
587  * Visual C 1.52c gives an unresolved external when linking a DLL :-( */
588 static int get_ip(const char *str, unsigned char ip[4])
589         {
590         unsigned int tmp[4];
591         int num=0,c,ok=0;
592
593         tmp[0]=tmp[1]=tmp[2]=tmp[3]=0;
594
595         for (;;)
596                 {
597                 c= *(str++);
598                 if ((c >= '0') && (c <= '9'))
599                         {
600                         ok=1;
601                         tmp[num]=tmp[num]*10+c-'0';
602                         if (tmp[num] > 255) return(0);
603                         }
604                 else if (c == '.')
605                         {
606                         if (!ok) return(-1);
607                         if (num == 3) return(0);
608                         num++;
609                         ok=0;
610                         }
611                 else if (c == '\0' && (num == 3) && ok)
612                         break;
613                 else
614                         return(0);
615                 }
616         ip[0]=tmp[0];
617         ip[1]=tmp[1];
618         ip[2]=tmp[2];
619         ip[3]=tmp[3];
620         return(1);
621         }
622
623 int BIO_get_accept_socket(char *host, int bind_mode)
624         {
625         int ret=0;
626         union {
627                 struct sockaddr sa;
628                 struct sockaddr_in sa_in;
629 #if OPENSSL_USE_IPV6
630                 struct sockaddr_in6 sa_in6;
631 #endif
632         } server,client;
633         int s=INVALID_SOCKET,cs,addrlen;
634         unsigned char ip[4];
635         unsigned short port;
636         char *str=NULL,*e;
637         char *h,*p;
638         unsigned long l;
639         int err_num;
640
641         if (BIO_sock_init() != 1) return(INVALID_SOCKET);
642
643         if ((str=BUF_strdup(host)) == NULL) return(INVALID_SOCKET);
644
645         h=p=NULL;
646         h=str;
647         for (e=str; *e; e++)
648                 {
649                 if (*e == ':')
650                         {
651                         p=e;
652                         }
653                 else if (*e == '/')
654                         {
655                         *e='\0';
656                         break;
657                         }
658                 }
659         if (p)  *p++='\0';      /* points at last ':', '::port' is special [see below] */
660         else    p=h,h=NULL;
661
662 #ifdef EAI_FAMILY
663         do {
664         static union {  void *p;
665                         int (WSAAPI *f)(const char *,const char *,
666                                  const struct addrinfo *,
667                                  struct addrinfo **);
668                         } p_getaddrinfo = {NULL};
669         static union {  void *p;
670                         void (WSAAPI *f)(struct addrinfo *);
671                         } p_freeaddrinfo = {NULL};
672         struct addrinfo *res,hint;
673
674         if (p_getaddrinfo.p==NULL)
675                 {
676                 if ((p_getaddrinfo.p=DSO_global_lookup("getaddrinfo"))==NULL ||
677                     (p_freeaddrinfo.p=DSO_global_lookup("freeaddrinfo"))==NULL)
678                         p_getaddrinfo.p=(void*)-1;
679                 }
680         if (p_getaddrinfo.p==(void *)-1) break;
681
682         /* '::port' enforces IPv6 wildcard listener. Some OSes,
683          * e.g. Solaris, default to IPv6 without any hint. Also
684          * note that commonly IPv6 wildchard socket can service
685          * IPv4 connections just as well...  */
686         memset(&hint,0,sizeof(hint));
687         hint.ai_flags = AI_PASSIVE;
688         if (h)
689                 {
690                 if (strchr(h,':'))
691                         {
692                         if (h[1]=='\0') h=NULL;
693 #if OPENSSL_USE_IPV6
694                         hint.ai_family = AF_INET6;
695 #else
696                         h=NULL;
697 #endif
698                         }
699                 else if (h[0]=='*' && h[1]=='\0')
700                         {
701                         hint.ai_family = AF_INET;
702                         h=NULL;
703                         }
704                 }
705
706         if ((*p_getaddrinfo.f)(h,p,&hint,&res)) break;
707
708         addrlen = res->ai_addrlen<=sizeof(server) ?
709                         res->ai_addrlen :
710                         sizeof(server);
711         memcpy(&server, res->ai_addr, addrlen);
712
713         (*p_freeaddrinfo.f)(res);
714         goto again;
715         } while (0);
716 #endif
717
718         if (!BIO_get_port(p,&port)) goto err;
719
720         memset((char *)&server,0,sizeof(server));
721         server.sa_in.sin_family=AF_INET;
722         server.sa_in.sin_port=htons(port);
723         addrlen = sizeof(server.sa_in);
724
725         if (h == NULL || strcmp(h,"*") == 0)
726                 server.sa_in.sin_addr.s_addr=INADDR_ANY;
727         else
728                 {
729                 if (!BIO_get_host_ip(h,&(ip[0]))) goto err;
730                 l=(unsigned long)
731                         ((unsigned long)ip[0]<<24L)|
732                         ((unsigned long)ip[1]<<16L)|
733                         ((unsigned long)ip[2]<< 8L)|
734                         ((unsigned long)ip[3]);
735                 server.sa_in.sin_addr.s_addr=htonl(l);
736                 }
737
738 again:
739         s=socket(server.sa.sa_family,SOCK_STREAM,SOCKET_PROTOCOL);
740         if (s == INVALID_SOCKET)
741                 {
742                 SYSerr(SYS_F_SOCKET,get_last_socket_error());
743                 ERR_add_error_data(3,"port='",host,"'");
744                 BIOerr(BIO_F_BIO_GET_ACCEPT_SOCKET,BIO_R_UNABLE_TO_CREATE_SOCKET);
745                 goto err;
746                 }
747
748 #ifdef SO_REUSEADDR
749         if (bind_mode == BIO_BIND_REUSEADDR)
750                 {
751                 int i=1;
752
753                 ret=setsockopt(s,SOL_SOCKET,SO_REUSEADDR,(char *)&i,sizeof(i));
754                 bind_mode=BIO_BIND_NORMAL;
755                 }
756 #endif
757         if (bind(s,&server.sa,addrlen) == -1)
758                 {
759 #ifdef SO_REUSEADDR
760                 err_num=get_last_socket_error();
761                 if ((bind_mode == BIO_BIND_REUSEADDR_IF_UNUSED) &&
762 #ifdef OPENSSL_SYS_WINDOWS
763                         /* Some versions of Windows define EADDRINUSE to
764                          * a dummy value.
765                          */
766                         (err_num == WSAEADDRINUSE))
767 #else
768                         (err_num == EADDRINUSE))
769 #endif
770                         {
771                         client = server;
772                         if (h == NULL || strcmp(h,"*") == 0)
773                                 {
774 #if OPENSSL_USE_IPV6
775                                 if (client.sa.sa_family == AF_INET6)
776                                         {
777                                         memset(&client.sa_in6.sin6_addr,0,sizeof(client.sa_in6.sin6_addr));
778                                         client.sa_in6.sin6_addr.s6_addr[15]=1;
779                                         }
780                                 else
781 #endif
782                                 if (client.sa.sa_family == AF_INET)
783                                         {
784                                         client.sa_in.sin_addr.s_addr=htonl(0x7F000001);
785                                         }
786                                 else    goto err;
787                                 }
788                         cs=socket(client.sa.sa_family,SOCK_STREAM,SOCKET_PROTOCOL);
789                         if (cs != INVALID_SOCKET)
790                                 {
791                                 int ii;
792                                 ii=connect(cs,&client.sa,addrlen);
793                                 closesocket(cs);
794                                 if (ii == INVALID_SOCKET)
795                                         {
796                                         bind_mode=BIO_BIND_REUSEADDR;
797                                         closesocket(s);
798                                         goto again;
799                                         }
800                                 /* else error */
801                                 }
802                         /* else error */
803                         }
804 #endif
805                 SYSerr(SYS_F_BIND,err_num);
806                 ERR_add_error_data(3,"port='",host,"'");
807                 BIOerr(BIO_F_BIO_GET_ACCEPT_SOCKET,BIO_R_UNABLE_TO_BIND_SOCKET);
808                 goto err;
809                 }
810         if (listen(s,MAX_LISTEN) == -1)
811                 {
812                 SYSerr(SYS_F_BIND,get_last_socket_error());
813                 ERR_add_error_data(3,"port='",host,"'");
814                 BIOerr(BIO_F_BIO_GET_ACCEPT_SOCKET,BIO_R_UNABLE_TO_LISTEN_SOCKET);
815                 goto err;
816                 }
817         ret=1;
818 err:
819         if (str != NULL) OPENSSL_free(str);
820         if ((ret == 0) && (s != INVALID_SOCKET))
821                 {
822                 closesocket(s);
823                 s= INVALID_SOCKET;
824                 }
825         return(s);
826         }
827
828 int BIO_accept(int sock, char **addr)
829         {
830         int ret=INVALID_SOCKET;
831         unsigned long l;
832         unsigned short port;
833         char *p;
834
835         struct {
836         /*
837          * As for following union. Trouble is that there are platforms
838          * that have socklen_t and there are platforms that don't, on
839          * some platforms socklen_t is int and on some size_t. So what
840          * one can do? One can cook #ifdef spaghetti, which is nothing
841          * but masochistic. Or one can do union between int and size_t.
842          * One naturally does it primarily for 64-bit platforms where
843          * sizeof(int) != sizeof(size_t). But would it work? Note that
844          * if size_t member is initialized to 0, then later int member
845          * assignment naturally does the job on little-endian platforms
846          * regardless accept's expectations! What about big-endians?
847          * If accept expects int*, then it works, and if size_t*, then
848          * length value would appear as unreasonably large. But this
849          * won't prevent it from filling in the address structure. The
850          * trouble of course would be if accept returns more data than
851          * actual buffer can accomodate and overwrite stack... That's
852          * where early OPENSSL_assert comes into picture. Besides, the
853          * only 64-bit big-endian platform found so far that expects
854          * size_t* is HP-UX, where stack grows towards higher address.
855          * <appro>
856          */
857         union { size_t s; int i; } len;
858         union {
859                 struct sockaddr sa;
860                 struct sockaddr_in sa_in;
861 #if OPENSSL_USE_IPV6
862                 struct sockaddr_in6 sa_in6;
863 #endif
864                 } from;
865         } sa;
866
867         sa.len.s=0;
868         sa.len.i=sizeof(sa.from);
869         memset(&sa.from,0,sizeof(sa.from));
870         ret=accept(sock,&sa.from.sa,(void *)&sa.len);
871         if (sizeof(sa.len.i)!=sizeof(sa.len.s) && sa.len.i==0)
872                 {
873                 OPENSSL_assert(sa.len.s<=sizeof(sa.from));
874                 sa.len.i = (int)sa.len.s;
875                 /* use sa.len.i from this point */
876                 }
877         if (ret == INVALID_SOCKET)
878                 {
879                 if(BIO_sock_should_retry(ret)) return -2;
880                 SYSerr(SYS_F_ACCEPT,get_last_socket_error());
881                 BIOerr(BIO_F_BIO_ACCEPT,BIO_R_ACCEPT_ERROR);
882                 goto end;
883                 }
884
885         if (addr == NULL) goto end;
886
887 #ifdef EAI_FAMILY
888         do {
889         char   h[NI_MAXHOST],s[NI_MAXSERV];
890         size_t nl;
891         static union {  void *p;
892                         int (WSAAPI *f)(const struct sockaddr *,size_t/*socklen_t*/,
893                                  char *,size_t,char *,size_t,int);
894                         } p_getnameinfo = {NULL};
895                         /* 2nd argument to getnameinfo is specified to
896                          * be socklen_t. Unfortunately there is a number
897                          * of environments where socklen_t is not defined.
898                          * As it's passed by value, it's safe to pass it
899                          * as size_t... <appro> */
900
901         if (p_getnameinfo.p==NULL)
902                 {
903                 if ((p_getnameinfo.p=DSO_global_lookup("getnameinfo"))==NULL)
904                         p_getnameinfo.p=(void*)-1;
905                 }
906         if (p_getnameinfo.p==(void *)-1) break;
907
908         if ((*p_getnameinfo.f)(&sa.from.sa,sa.len.i,h,sizeof(h),s,sizeof(s),
909             NI_NUMERICHOST|NI_NUMERICSERV)) break;
910         nl = strlen(h)+strlen(s)+2;
911         p = *addr;
912         if (p)  { *p = '\0'; p = OPENSSL_realloc(p,nl); }
913         else    { p = OPENSSL_malloc(nl);               }
914         if (p==NULL)
915                 {
916                 BIOerr(BIO_F_BIO_ACCEPT,ERR_R_MALLOC_FAILURE);
917                 goto end;
918                 }
919         *addr = p;
920         BIO_snprintf(*addr,nl,"%s:%s",h,s);
921         goto end;
922         } while(0);
923 #endif
924         if (sa.from.sa.sa_family != AF_INET) goto end;
925         l=ntohl(sa.from.sa_in.sin_addr.s_addr);
926         port=ntohs(sa.from.sa_in.sin_port);
927         if (*addr == NULL)
928                 {
929                 if ((p=OPENSSL_malloc(24)) == NULL)
930                         {
931                         BIOerr(BIO_F_BIO_ACCEPT,ERR_R_MALLOC_FAILURE);
932                         goto end;
933                         }
934                 *addr=p;
935                 }
936         BIO_snprintf(*addr,24,"%d.%d.%d.%d:%d",
937                      (unsigned char)(l>>24L)&0xff,
938                      (unsigned char)(l>>16L)&0xff,
939                      (unsigned char)(l>> 8L)&0xff,
940                      (unsigned char)(l     )&0xff,
941                      port);
942 end:
943         return(ret);
944         }
945
946 int BIO_set_tcp_ndelay(int s, int on)
947         {
948         int ret=0;
949 #if defined(TCP_NODELAY) && (defined(IPPROTO_TCP) || defined(SOL_TCP))
950         int opt;
951
952 #ifdef SOL_TCP
953         opt=SOL_TCP;
954 #else
955 #ifdef IPPROTO_TCP
956         opt=IPPROTO_TCP;
957 #endif
958 #endif
959         
960         ret=setsockopt(s,opt,TCP_NODELAY,(char *)&on,sizeof(on));
961 #endif
962         return(ret == 0);
963         }
964
965 int BIO_socket_nbio(int s, int mode)
966         {
967         int ret= -1;
968         int l;
969
970         l=mode;
971 #ifdef FIONBIO
972         ret=BIO_socket_ioctl(s,FIONBIO,&l);
973 #endif
974         return(ret == 0);
975         }
976 #endif