* Fix 100 percent cpu loop when ipv6 is enabled
[citadel.git] / webcit / tcp_sockets.c
1 /*
2  * $Id$
3  *
4  * Copyright (c) 1987-2010 by the citadel.org team
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License as published by
8  * the Free Software Foundation; either version 3 of the License, or
9  * (at your option) any later version.
10  *
11  * This program is distributed in the hope that it will be useful,
12  * but WITHOUT ANY WARRANTY; without even the implied warranty of
13  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14  * GNU General Public License for more details.
15  *
16  * You should have received a copy of the GNU General Public License
17  * along with this program; if not, write to the Free Software
18  * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
19  */
20
21 /*
22  * Uncomment this to log all communications with the Citadel server
23 #define SERV_TRACE 1
24  */
25
26
27 #include "webcit.h"
28 #include "webserver.h"
29
30 extern int DisableGzip;
31 long MaxRead = -1; /* should we do READ scattered or all at once? */
32
33 /*
34  * register the timeout
35  */
36 RETSIGTYPE timeout(int signum)
37 {
38         lprintf(1, "Connection timed out; unable to reach citserver\n");
39         /* no exit here, since we need to server the connection unreachable thing. exit(3); */
40 }
41
42
43 /*
44  * Client side - connect to a unix domain socket
45  */
46 int uds_connectsock(char *sockpath)
47 {
48         struct sockaddr_un addr;
49         int s;
50
51         memset(&addr, 0, sizeof(addr));
52         addr.sun_family = AF_UNIX;
53         strncpy(addr.sun_path, sockpath, sizeof addr.sun_path);
54
55         s = socket(AF_UNIX, SOCK_STREAM, 0);
56         if (s < 0) {
57                 lprintf(1, "Can't create socket[%s]: %s\n", sockpath, strerror(errno));
58                 return(-1);
59         }
60
61         if (connect(s, (struct sockaddr *) &addr, sizeof(addr)) < 0) {
62                 lprintf(1, "Can't connect [%s]: %s\n", sockpath, strerror(errno));
63                 close(s);
64                 return(-1);
65         }
66
67         return s;
68 }
69
70
71 /*
72  * TCP client - connect to a host/port
73  */
74 int tcp_connectsock(char *host, int port)
75 {
76         struct sockaddr_in stSockAddr;
77         int rv;
78         int sock;
79
80         sock = socket(PF_INET, SOCK_STREAM, IPPROTO_TCP);
81         if (sock < 0) {
82                 lprintf(1, "Can't create socket: %s\n", strerror(errno));
83                 return (-1);
84         }
85
86         memset(&stSockAddr, 0, sizeof(struct sockaddr_in));
87         stSockAddr.sin_family = AF_INET;
88         stSockAddr.sin_port = htons(port);
89         rv = inet_pton(AF_INET, host, &stSockAddr.sin_addr);
90
91         if (rv <= 0) {
92                 lprintf(1, "Can't grok %s: %s\n", host, strerror(errno));
93                 return (-1);
94         }
95
96         if (connect(sock, (const struct sockaddr *)&stSockAddr, sizeof(struct sockaddr_in)) != 0) {
97                 lprintf(1, "Can't connect to %s.%d: %s\n", host, port, strerror(errno));
98                 close(sock);
99                 return (-1);
100         }
101
102         return (sock);
103 }
104
105
106
107 /*
108  *  input string from pipe
109  */
110 int serv_getln(char *strbuf, int bufsize)
111 {
112         wcsession *WCC = WC;
113         int len;
114
115         *strbuf = '\0';
116         StrBuf_ServGetln(WCC->MigrateReadLineBuf);
117         len = StrLength(WCC->MigrateReadLineBuf);
118         if (len > bufsize)
119                 len = bufsize - 1;
120         memcpy(strbuf, ChrPtr(WCC->MigrateReadLineBuf), len);
121         FlushStrBuf(WCC->MigrateReadLineBuf);
122         strbuf[len] = '\0';
123 #ifdef SERV_TRACE
124         lprintf(9, "%3d<<<%s\n", WC->serv_sock, strbuf);
125 #endif
126         return len;
127 }
128
129
130 int StrBuf_ServGetln(StrBuf *buf)
131 {
132         wcsession *WCC = WC;
133         const char *ErrStr = NULL;
134         int rc;
135         
136         FlushStrBuf(buf);
137         rc = StrBufTCP_read_buffered_line_fast(buf, 
138                                                WCC->ReadBuf, 
139                                                &WCC->ReadPos, 
140                                                &WCC->serv_sock, 
141                                                5, 1, 
142                                                &ErrStr);
143         if (rc < 0)
144         {
145                 lprintf(1, "Server connection broken: %s\n",
146                         (ErrStr)?ErrStr:"");
147                 wc_backtrace();
148                 WCC->serv_sock = (-1);
149                 WCC->connected = 0;
150                 WCC->logged_in = 0;
151         }
152 #ifdef SERV_TRACE
153         else 
154         {
155                 long pos=0;
156                 if (WCC->ReadPos != NULL)
157                         pos = WCC->ReadPos - ChrPtr(buf);
158                 lprintf(9, "%3d<<<[%ld]%s\n", WC->serv_sock, pos, ChrPtr(buf));
159         }
160 #endif
161         return rc;
162 }
163
164 int StrBuf_ServGetBLOBBuffered(StrBuf *buf, long BlobSize)
165 {
166         wcsession *WCC = WC;
167         const char *ErrStr;
168         int rc;
169         
170         rc = StrBufReadBLOBBuffered(buf, 
171                                     WCC->ReadBuf, 
172                                     &WCC->ReadPos,
173                                     &WCC->serv_sock, 
174                                     1, 
175                                     BlobSize, 
176                                     NNN_TERM,
177                                     &ErrStr);
178         if (rc < 0)
179         {
180                 lprintf(1, "Server connection broken: %s\n",
181                         (ErrStr)?ErrStr:"");
182                 wc_backtrace();
183                 WCC->serv_sock = (-1);
184                 WCC->connected = 0;
185                 WCC->logged_in = 0;
186         }
187 #ifdef SERV_TRACE
188         else
189                 lprintf(9, "%3d<<<BLOB: %ld bytes\n", WC->serv_sock, StrLength(buf));
190 #endif
191
192         return rc;
193 }
194
195 int StrBuf_ServGetBLOB(StrBuf *buf, long BlobSize)
196 {
197         wcsession *WCC = WC;
198         const char *ErrStr;
199         int rc;
200         
201         WCC->ReadPos = NULL;
202         rc = StrBufReadBLOB(buf, &WCC->serv_sock, 1, BlobSize, &ErrStr);
203         if (rc < 0)
204         {
205                 lprintf(1, "Server connection broken: %s\n",
206                         (ErrStr)?ErrStr:"");
207                 wc_backtrace();
208                 WCC->serv_sock = (-1);
209                 WCC->connected = 0;
210                 WCC->logged_in = 0;
211         }
212 #ifdef SERV_TRACE
213         else
214                 lprintf(9, "%3d<<<BLOB: %ld bytes\n", WC->serv_sock, StrLength(buf));
215 #endif
216
217         return rc;
218 }
219
220 /*
221  *  send binary to server
222  *  buf the buffer to write to citadel server
223  *  nbytes how many bytes to send to citadel server
224  */
225 void serv_write(const char *buf, int nbytes)
226 {
227         wcsession *WCC = WC;
228         int bytes_written = 0;
229         int retval;
230
231         FlushStrBuf(WCC->ReadBuf);
232         WCC->ReadPos = NULL;
233         while (bytes_written < nbytes) {
234                 retval = write(WCC->serv_sock, &buf[bytes_written],
235                                nbytes - bytes_written);
236                 if (retval < 1) {
237                         const char *ErrStr = strerror(errno);
238                         lprintf(1, "Server connection broken: %s\n",
239                                 (ErrStr)?ErrStr:"");
240                         close(WCC->serv_sock);
241                         WCC->serv_sock = (-1);
242                         WCC->connected = 0;
243                         WCC->logged_in = 0;
244                         return;
245                 }
246                 bytes_written = bytes_written + retval;
247         }
248 }
249
250
251 /*
252  *  send line to server
253  *  string the line to send to the citadel server
254  */
255 void serv_puts(const char *string)
256 {
257         wcsession *WCC = WC;
258 #ifdef SERV_TRACE
259         lprintf(9, "%3d>>>%s\n", WC->serv_sock, string);
260 #endif
261         FlushStrBuf(WCC->ReadBuf);
262         WCC->ReadPos = NULL;
263
264         serv_write(string, strlen(string));
265         serv_write("\n", 1);
266 }
267
268 /*
269  *  send line to server
270  *  string the line to send to the citadel server
271  */
272 void serv_putbuf(const StrBuf *string)
273 {
274         wcsession *WCC = WC;
275 #ifdef SERV_TRACE
276         lprintf(9, "%3d>>>%s\n", WC->serv_sock, ChrPtr(string));
277 #endif
278         FlushStrBuf(WCC->ReadBuf);
279         WCC->ReadPos = NULL;
280
281         serv_write(ChrPtr(string), StrLength(string));
282         serv_write("\n", 1);
283 }
284
285
286 /*
287  *  convenience function to send stuff to the server
288  *  format the formatstring
289  *  ... the entities to insert into format 
290  */
291 void serv_printf(const char *format,...)
292 {
293         wcsession *WCC = WC;
294         va_list arg_ptr;
295         char buf[SIZ];
296         size_t len;
297
298         FlushStrBuf(WCC->ReadBuf);
299         WCC->ReadPos = NULL;
300
301         va_start(arg_ptr, format);
302         vsnprintf(buf, sizeof buf, format, arg_ptr);
303         va_end(arg_ptr);
304
305         len = strlen(buf);
306         buf[len++] = '\n';
307         buf[len] = '\0';
308         serv_write(buf, len);
309 #ifdef SERV_TRACE
310         lprintf(9, ">>>%s", buf);
311 #endif
312 }
313
314
315
316 /**
317  * Read binary data from server into memory using a series of
318  * server READ commands.
319  * \return the read content as StrBuf
320  */
321 int serv_read_binary(StrBuf *Ret, size_t total_len, StrBuf *Buf) 
322 {
323         wcsession *WCC = WC;
324         size_t bytes = 0;
325         size_t thisblock = 0;
326         
327         if (Ret == NULL)
328             return -1;
329
330         if (MaxRead == -1)
331         {
332                 serv_printf("READ %d|"SIZE_T_FMT, 0, total_len);
333                 if (StrBuf_ServGetln(Buf) > 0)
334                 {
335                         long YetRead;
336                         const char *ErrStr;
337                         const char *pch;
338                         int rc;
339
340                         if (GetServerStatus(Buf, NULL) == 6)
341                         {
342                             StrBufCutLeft(Buf, 4);
343                             thisblock = StrTol(Buf);
344                             if (WCC->serv_sock==-1) {
345                                     FlushStrBuf(Ret); 
346                                     return -1; 
347                             }
348
349                             if (WCC->ReadPos != NULL) {
350                                     pch = ChrPtr(WCC->ReadBuf);
351
352                                     YetRead = WCC->ReadPos - pch;
353                                     if (YetRead > 0)
354                                     {
355                                             long StillThere;
356                                             
357                                             StillThere = StrLength(WCC->ReadBuf) - 
358                                                     YetRead;
359                                             
360                                             StrBufPlain(Ret, 
361                                                         WCC->ReadPos,
362                                                         StillThere);
363                                             total_len -= StillThere;
364                                     }
365                                     FlushStrBuf(WCC->ReadBuf);
366                                     WCC->ReadPos = NULL;
367                             } 
368                             if (total_len > 0)
369                             {
370                                     rc = StrBufReadBLOB(Ret, 
371                                                         &WCC->serv_sock, 
372                                                         1, 
373                                                         total_len,
374                                                         &ErrStr);
375                                     if (rc < 0)
376                                     {
377                                             lprintf(1, "Server connection broken: %s\n",
378                                                     (ErrStr)?ErrStr:"");
379                                             wc_backtrace();
380                                             WCC->serv_sock = (-1);
381                                             WCC->connected = 0;
382                                             WCC->logged_in = 0;
383                                             return rc;
384                                     }
385                                     else
386                                             return StrLength(Ret);
387                             }
388                             else 
389                                     return StrLength(Ret);
390                         }
391                 }
392                 else
393                         return -1;
394         }
395         else while ((WCC->serv_sock!=-1) &&
396                (bytes < total_len)) {
397                 thisblock = MaxRead;
398                 if ((total_len - bytes) < thisblock) {
399                         thisblock = total_len - bytes;
400                         if (thisblock == 0) {
401                                 FlushStrBuf(Ret); 
402                                 return -1; 
403                         }
404                 }
405                 serv_printf("READ %d|%d", (int)bytes, (int)thisblock);
406                 if (StrBuf_ServGetln(Buf) > 0)
407                 {
408                         if (GetServerStatus(Buf, NULL) == 6)
409                         {
410                             StrBufCutLeft(Buf, 4);
411                             thisblock = StrTol(Buf);
412                             if (WCC->serv_sock==-1) {
413                                     FlushStrBuf(Ret); 
414                                     return -1; 
415                             }
416                             StrBuf_ServGetBLOBBuffered(Ret, thisblock);
417                             bytes += thisblock;
418                     }
419                     else {
420                             lprintf(3, "Error: %s\n", ChrPtr(Buf) + 4);
421                             return -1;
422                     }
423                 }
424         }
425         return StrLength(Ret);
426 }
427
428
429 int ClientGetLine(ParsedHttpHdrs *Hdr, StrBuf *Target)
430 {
431         const char *Error;
432 #ifdef HAVE_OPENSSL
433         const char *pch, *pchs;
434         int rlen, len, retval = 0;
435
436         if (is_https) {
437                 int ntries = 0;
438                 if (StrLength(Hdr->ReadBuf) > 0) {
439                         pchs = ChrPtr(Hdr->ReadBuf);
440                         pch = strchr(pchs, '\n');
441                         if (pch != NULL) {
442                                 rlen = 0;
443                                 len = pch - pchs;
444                                 if (len > 0 && (*(pch - 1) == '\r') )
445                                         rlen ++;
446                                 StrBufSub(Target, Hdr->ReadBuf, 0, len - rlen);
447                                 StrBufCutLeft(Hdr->ReadBuf, len + 1);
448                                 return len - rlen;
449                         }
450                 }
451
452                 while (retval == 0) { 
453                                 pch = NULL;
454                                 pchs = ChrPtr(Hdr->ReadBuf);
455                                 if (*pchs != '\0')
456                                         pch = strchr(pchs, '\n');
457                                 if (pch == NULL) {
458                                         retval = client_read_sslbuffer(Hdr->ReadBuf, SLEEPING);
459                                         pchs = ChrPtr(Hdr->ReadBuf);
460                                         pch = strchr(pchs, '\n');
461                                 }
462                                 if (retval == 0) {
463                                         sleeeeeeeeeep(1);
464                                         ntries ++;
465                                 }
466                                 if (ntries > 10)
467                                         return 0;
468                 }
469                 if ((retval > 0) && (pch != NULL)) {
470                         rlen = 0;
471                         len = pch - pchs;
472                         if (len > 0 && (*(pch - 1) == '\r') )
473                                 rlen ++;
474                         StrBufSub(Target, Hdr->ReadBuf, 0, len - rlen);
475                         StrBufCutLeft(Hdr->ReadBuf, len + 1);
476                         return len - rlen;
477
478                 }
479                 else 
480                         return -1;
481         }
482         else 
483 #endif
484                 return StrBufTCP_read_buffered_line_fast(Target, 
485                                                          Hdr->ReadBuf,
486                                                          &Hdr->Pos,
487                                                          &Hdr->http_sock,
488                                                          5,
489                                                          1,
490                                                          &Error);
491 }
492
493 /* 
494  * This is a generic function to set up a master socket for listening on
495  * a TCP port.  The server shuts down if the bind fails.  (IPv4/IPv6 version)
496  *
497  * ip_addr      IP address to bind
498  * port_number  port number to bind
499  * queue_len    number of incoming connections to allow in the queue
500  */
501 int ig_tcp_server(char *ip_addr, int port_number, int queue_len)
502 {
503         struct protoent *p;
504         struct sockaddr_in6 sin;
505         int s, i;
506
507         memset(&sin, 0, sizeof(sin));
508         sin.sin6_family = AF_INET6;
509
510         if ((ip_addr == NULL) || (IsEmptyStr(ip_addr)) || (!strcmp(ip_addr, "0.0.0.0"))) {
511                 sin.sin6_addr = in6addr_any;
512         } else {
513                 char bind_to[256];
514                 if ((strchr(ip_addr, '.')) && (!strchr(ip_addr, ':'))) {
515                         snprintf(bind_to, sizeof bind_to, "::ffff:%s", ip_addr);
516                 }
517                 else {
518                         safestrncpy(bind_to, ip_addr, sizeof bind_to);
519                 }
520                 if (inet_pton(AF_INET6, bind_to, &sin.sin6_addr) <= 0) {
521                         lprintf(1, "Error binding to [%s] : %s\n", ip_addr, strerror(errno));
522                         return (-WC_EXIT_BIND);
523                 }
524         }
525
526         if (port_number == 0) {
527                 lprintf(1, "Cannot start: no port number specified.\n");
528                 return (-WC_EXIT_BIND);
529         }
530         sin.sin6_port = htons((u_short) port_number);
531
532         p = getprotobyname("tcp");
533
534         s = socket(PF_INET6, SOCK_STREAM, (p->p_proto));
535         if (s < 0) {
536                 lprintf(1, "Can't create an IPv6 socket: %s\n", strerror(errno));
537                 return (-WC_EXIT_BIND);
538         }
539         /* Set some socket options that make sense. */
540         i = 1;
541         setsockopt(s, SOL_SOCKET, SO_REUSEADDR, &i, sizeof(i));
542
543         if (bind(s, (struct sockaddr *) &sin, sizeof(sin)) < 0) {
544                 lprintf(1, "Can't bind: %s\n", strerror(errno));
545                 return (-WC_EXIT_BIND);
546         }
547         if (listen(s, queue_len) < 0) {
548                 lprintf(1, "Can't listen: %s\n", strerror(errno));
549                 return (-WC_EXIT_BIND);
550         }
551         return (s);
552 }
553
554 #if 0
555 /* 
556  * This is a generic function to set up a master socket for listening on
557  * a TCP port.  The server shuts down if the bind fails.  (Old IPv4-only version)
558  *
559  * ip_addr      IP address to bind
560  * port_number  port number to bind
561  * queue_len    number of incoming connections to allow in the queue
562  */
563 int ig_tcp_server(char *ip_addr, int port_number, int queue_len)
564 {
565         struct protoent *p;
566         struct sockaddr_in sin;
567         int s, i;
568
569         memset(&sin, 0, sizeof(sin));
570         sin.sin_family = AF_INET;
571         if (ip_addr == NULL) {
572                 sin.sin_addr.s_addr = INADDR_ANY;
573         } else {
574                 sin.sin_addr.s_addr = inet_addr(ip_addr);
575         }
576
577         if (sin.sin_addr.s_addr == INADDR_NONE) {
578                 sin.sin_addr.s_addr = INADDR_ANY;
579         }
580
581         if (port_number == 0) {
582                 lprintf(1, "Cannot start: no port number specified.\n");
583                 return (-WC_EXIT_BIND);
584         }
585         sin.sin_port = htons((u_short) port_number);
586
587         p = getprotobyname("tcp");
588
589         s = socket(PF_INET, SOCK_STREAM, (p->p_proto));
590         if (s < 0) {
591                 lprintf(1, "Can't create an IPv4 socket: %s\n", strerror(errno));
592                 return (-WC_EXIT_BIND);
593         }
594         /* Set some socket options that make sense. */
595         i = 1;
596         setsockopt(s, SOL_SOCKET, SO_REUSEADDR, &i, sizeof(i));
597
598         if (bind(s, (struct sockaddr *) &sin, sizeof(sin)) < 0) {
599                 lprintf(1, "Can't bind: %s\n", strerror(errno));
600                 return (-WC_EXIT_BIND);
601         }
602         if (listen(s, queue_len) < 0) {
603                 lprintf(1, "Can't listen: %s\n", strerror(errno));
604                 return (-WC_EXIT_BIND);
605         }
606         return (s);
607 }
608 #endif
609
610
611 /*
612  * Create a Unix domain socket and listen on it
613  * sockpath - file name of the unix domain socket
614  * queue_len - Number of incoming connections to allow in the queue
615  */
616 int ig_uds_server(char *sockpath, int queue_len)
617 {
618         struct sockaddr_un addr;
619         int s;
620         int i;
621         int actual_queue_len;
622
623         actual_queue_len = queue_len;
624         if (actual_queue_len < 5) actual_queue_len = 5;
625
626         i = unlink(sockpath);
627         if ((i != 0) && (errno != ENOENT)) {
628                 lprintf(1, "webcit: can't unlink %s: %s\n",
629                         sockpath, strerror(errno));
630                 return (-WC_EXIT_BIND);
631         }
632
633         memset(&addr, 0, sizeof(addr));
634         addr.sun_family = AF_UNIX;
635         safestrncpy(addr.sun_path, sockpath, sizeof addr.sun_path);
636
637         s = socket(AF_UNIX, SOCK_STREAM, 0);
638         if (s < 0) {
639                 lprintf(1, "webcit: Can't create a unix domain socket: %s\n", strerror(errno));
640                 return (-WC_EXIT_BIND);
641         }
642
643         if (bind(s, (struct sockaddr *)&addr, sizeof(addr)) < 0) {
644                 lprintf(1, "webcit: Can't bind: %s\n",
645                         strerror(errno));
646                 return (-WC_EXIT_BIND);
647         }
648
649         if (listen(s, actual_queue_len) < 0) {
650                 lprintf(1, "webcit: Can't listen: %s\n",
651                         strerror(errno));
652                 return (-WC_EXIT_BIND);
653         }
654
655         chmod(sockpath, 0777);
656         return(s);
657 }
658
659
660
661
662 /*
663  * Read data from the client socket.
664  *
665  * sock         socket fd to read from
666  * buf          buffer to read into 
667  * bytes        number of bytes to read
668  * timeout      Number of seconds to wait before timing out
669  *
670  * Possible return values:
671  *      1       Requested number of bytes has been read.
672  *      0       Request timed out.
673  *      -1      Connection is broken, or other error.
674  */
675 int client_read_to(ParsedHttpHdrs *Hdr, StrBuf *Target, int bytes, int timeout)
676 {
677         const char *Error;
678         int retval = 0;
679
680 #ifdef HAVE_OPENSSL
681         if (is_https) {
682                 long bufremain;
683                 long baselen;
684
685                 baselen = StrLength(Target);
686
687                 if (Hdr->Pos == NULL)
688                         Hdr->Pos = ChrPtr(Hdr->ReadBuf);
689                 bufremain = StrLength(Hdr->ReadBuf) - (Hdr->Pos - ChrPtr(Hdr->ReadBuf));
690
691                 if (bytes < bufremain)
692                         bufremain = bytes;
693                 StrBufAppendBufPlain(Target, Hdr->Pos, bufremain, 0);
694                 StrBufCutLeft(Hdr->ReadBuf, bufremain);
695
696                 if (bytes > bufremain) 
697                 {
698                         while ((StrLength(Hdr->ReadBuf) + StrLength(Target) < bytes + baselen) &&
699                                (retval >= 0))
700                                 retval = client_read_sslbuffer(Hdr->ReadBuf, timeout);
701                         if (retval >= 0) {
702                                 StrBufAppendBuf(Target, Hdr->ReadBuf, 0); /* todo: Buf > bytes? */
703 #ifdef HTTP_TRACING
704                                 write(2, "\033[32m", 5);
705                                 write(2, buf, bytes);
706                                 write(2, "\033[30m", 5);
707 #endif
708                                 return 1;
709                         }
710                         else {
711                                 lprintf(2, "client_read_ssl() failed\n");
712                                 return -1;
713                         }
714                 }
715                 else 
716                         return 1;
717         }
718 #endif
719
720         retval = StrBufReadBLOBBuffered(Target, 
721                                         Hdr->ReadBuf, 
722                                         &Hdr->Pos, 
723                                         &Hdr->http_sock, 
724                                         1, 
725                                         bytes,
726                                         O_TERM,
727                                         &Error);
728         if (retval < 0) {
729                 lprintf(2, "client_read() failed: %s\n",
730                         Error);
731                 wc_backtrace();
732                 return retval;
733         }
734
735 #ifdef HTTP_TRACING
736         write(2, "\033[32m", 5);
737         write(2, buf, bytes);
738         write(2, "\033[30m", 5);
739 #endif
740         return 1;
741 }
742
743
744 /*
745  * Begin buffering HTTP output so we can transmit it all in one write operation later.
746  */
747 void begin_burst(void)
748 {
749         if (WC->WBuf == NULL) {
750                 WC->WBuf = NewStrBufPlain(NULL, 32768);
751         }
752 }
753
754
755 /*
756  * Finish buffering HTTP output.  [Compress using zlib and] output with a Content-Length: header.
757  */
758 long end_burst(void)
759 {
760         wcsession *WCC = WC;
761         const char *ptr, *eptr;
762         long count;
763         ssize_t res = 0;
764         fd_set wset;
765         int fdflags;
766
767         if (!DisableGzip && (WCC->Hdr->HR.gzip_ok))
768         {
769                 if (CompressBuffer(WCC->WBuf) > 0)
770                         hprintf("Content-encoding: gzip\r\n");
771                 else {
772                         lprintf(CTDL_ALERT, "Compression failed: %d [%s] sending uncompressed\n", errno, strerror(errno));
773                         wc_backtrace();
774                 }
775         }
776
777         if (WCC->WFBuf != NULL) {
778                 WildFireSerializePayload(WCC->WFBuf, WCC->HBuf, &WCC->Hdr->nWildfireHeaders, NULL);
779                 FreeStrBuf(&WCC->WFBuf);
780         }
781
782         if (WCC->Hdr->HR.prohibit_caching)
783                 hprintf("Pragma: no-cache\r\nCache-Control: no-store\r\nExpires:-1\r\n");
784         hprintf("Content-length: %d\r\n\r\n", StrLength(WCC->WBuf));
785
786         ptr = ChrPtr(WCC->HBuf);
787         count = StrLength(WCC->HBuf);
788         eptr = ptr + count;
789
790 #ifdef HAVE_OPENSSL
791         if (is_https) {
792                 client_write_ssl(WCC->HBuf);
793                 client_write_ssl(WCC->WBuf);
794                 return (count);
795         }
796 #endif
797
798         
799 #ifdef HTTP_TRACING
800         
801         write(2, "\033[34m", 5);
802         write(2, ptr, StrLength(WCC->WBuf));
803         write(2, "\033[30m", 5);
804 #endif
805         if (WCC->Hdr->http_sock == -1)
806                 return -1;
807         fdflags = fcntl(WC->Hdr->http_sock, F_GETFL);
808
809         while ((ptr < eptr) && (WCC->Hdr->http_sock != -1)){
810                 if ((fdflags & O_NONBLOCK) == O_NONBLOCK) {
811                         FD_ZERO(&wset);
812                         FD_SET(WCC->Hdr->http_sock, &wset);
813                         if (select(WCC->Hdr->http_sock + 1, NULL, &wset, NULL, NULL) == -1) {
814                                 lprintf(2, "client_write: Socket select failed (%s)\n", strerror(errno));
815                                 return -1;
816                         }
817                 }
818
819                 if ((WCC->Hdr->http_sock == -1) || 
820                     (res = write(WCC->Hdr->http_sock, 
821                                  ptr,
822                                  count)) == -1) {
823                         lprintf(2, "client_write: Socket write failed (%s)\n", strerror(errno));
824                         wc_backtrace();
825                         return res;
826                 }
827                 count -= res;
828                 ptr += res;
829         }
830
831         ptr = ChrPtr(WCC->WBuf);
832         count = StrLength(WCC->WBuf);
833         eptr = ptr + count;
834
835 #ifdef HTTP_TRACING
836         
837         write(2, "\033[34m", 5);
838         write(2, ptr, StrLength(WCC->WBuf));
839         write(2, "\033[30m", 5);
840 #endif
841
842         while ((ptr < eptr) && (WCC->Hdr->http_sock != -1)) {
843                 if ((fdflags & O_NONBLOCK) == O_NONBLOCK) {
844                         FD_ZERO(&wset);
845                         FD_SET(WCC->Hdr->http_sock, &wset);
846                         if (select(WCC->Hdr->http_sock + 1, NULL, &wset, NULL, NULL) == -1) {
847                                 lprintf(2, "client_write: Socket select failed (%s)\n", strerror(errno));
848                                 return -1;
849                         }
850                 }
851
852                 if ((WCC->Hdr->http_sock == -1) || 
853                     (res = write(WCC->Hdr->http_sock, 
854                                  ptr,
855                                  count)) == -1) {
856                         lprintf(2, "client_write: Socket write failed (%s)\n", strerror(errno));
857                         wc_backtrace();
858                         return res;
859                 }
860                 count -= res;
861                 ptr += res;
862         }
863
864         return StrLength(WCC->WBuf);
865 }
866
867
868 /*
869  * lingering_close() a`la Apache. see
870  * http://www.apache.org/docs/misc/fin_wait_2.html for rationale
871  */
872 int lingering_close(int fd)
873 {
874         char buf[SIZ];
875         int i;
876         fd_set set;
877         struct timeval tv, start;
878
879         gettimeofday(&start, NULL);
880         if (fd == -1)
881                 return -1;
882         shutdown(fd, 1);
883         do {
884                 do {
885                         gettimeofday(&tv, NULL);
886                         tv.tv_sec = SLEEPING - (tv.tv_sec - start.tv_sec);
887                         tv.tv_usec = start.tv_usec - tv.tv_usec;
888                         if (tv.tv_usec < 0) {
889                                 tv.tv_sec--;
890                                 tv.tv_usec += 1000000;
891                         }
892                         FD_ZERO(&set);
893                         FD_SET(fd, &set);
894                         i = select(fd + 1, &set, NULL, NULL, &tv);
895                 } while (i == -1 && errno == EINTR);
896
897                 if (i <= 0)
898                         break;
899
900                 i = read(fd, buf, sizeof buf);
901         } while (i != 0 && (i != -1 || errno == EINTR));
902
903         return close(fd);
904 }
905
906 void
907 HttpNewModule_TCPSOCKETS
908 (ParsedHttpHdrs *httpreq)
909 {
910
911         httpreq->ReadBuf = NewStrBufPlain(NULL, SIZ * 4);
912 }
913
914 void
915 HttpDetachModule_TCPSOCKETS
916 (ParsedHttpHdrs *httpreq)
917 {
918
919         FlushStrBuf(httpreq->ReadBuf);
920         ReAdjustEmptyBuf(httpreq->ReadBuf, 4 * SIZ, SIZ);
921 }
922
923 void
924 HttpDestroyModule_TCPSOCKETS
925 (ParsedHttpHdrs *httpreq)
926 {
927
928         FreeStrBuf(&httpreq->ReadBuf);
929 }
930
931
932 void
933 SessionNewModule_TCPSOCKETS
934 (wcsession *sess)
935 {
936         sess->CLineBuf = NewStrBuf();
937         sess->MigrateReadLineBuf = NewStrBuf();
938 }
939
940 void 
941 SessionDestroyModule_TCPSOCKETS
942 (wcsession *sess)
943 {
944         FreeStrBuf(&sess->CLineBuf);
945         FreeStrBuf(&sess->ReadBuf);
946         sess->ReadPos = NULL;
947         FreeStrBuf(&sess->MigrateReadLineBuf);
948         if (sess->serv_sock > 0)
949                 close(sess->serv_sock);
950 }