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ef416fc2 1/*
e53920b9 2 * "$Id: http.c 5373 2006-04-06 20:03:32Z mike $"
ef416fc2 3 *
4 * HTTP routines for the Common UNIX Printing System (CUPS).
5 *
fa73b229 6 * Copyright 1997-2006 by Easy Software Products, all rights reserved.
ef416fc2 7 *
8 * These coded instructions, statements, and computer programs are the
9 * property of Easy Software Products and are protected by Federal
10 * copyright law. Distribution and use rights are outlined in the file
11 * "LICENSE.txt" which should have been included with this file. If this
12 * file is missing or damaged please contact Easy Software Products
13 * at:
14 *
15 * Attn: CUPS Licensing Information
16 * Easy Software Products
17 * 44141 Airport View Drive, Suite 204
18 * Hollywood, Maryland 20636 USA
19 *
20 * Voice: (301) 373-9600
21 * EMail: cups-info@cups.org
22 * WWW: http://www.cups.org
23 *
24 * This file is subject to the Apple OS-Developed Software exception.
25 *
26 * Contents:
27 *
ecdc0628 28 * httpBlocking() - Set blocking/non-blocking behavior on a connection.
ef416fc2 29 * httpCheck() - Check to see if there is a pending response from
30 * the server.
31 * httpClearCookie() - Clear the cookie value(s).
ecdc0628 32 * httpClearFields() - Clear HTTP request fields.
ef416fc2 33 * httpClose() - Close an HTTP connection...
34 * httpConnect() - Connect to a HTTP server.
35 * httpConnectEncrypt() - Connect to a HTTP server using encryption.
36 * httpDelete() - Send a DELETE request to the server.
37 * httpEncryption() - Set the required encryption on the link.
ecdc0628 38 * httpError() - Get the last error on a connection.
ef416fc2 39 * httpFlush() - Flush data from a HTTP connection.
40 * httpFlushWrite() - Flush data in write buffer.
41 * httpGet() - Send a GET request to the server.
ecdc0628 42 * httpGetBlocking() - Get the blocking/non-block state of a connection.
43 * httpGetCookie() - Get any cookie data from the response.
44 * httpGetFd() - Get the file descriptor associated with a
45 * connection.
46 * httpGetField() - Get a field value from a request/response.
ef416fc2 47 * httpGetLength() - Get the amount of data remaining from the
48 * content-length or transfer-encoding fields.
49 * httpGetLength2() - Get the amount of data remaining from the
50 * content-length or transfer-encoding fields.
ecdc0628 51 * httpGetStatus() - Get the status of the last HTTP request.
ef416fc2 52 * httpGetSubField() - Get a sub-field value.
53 * httpGets() - Get a line of text from a HTTP connection.
54 * httpHead() - Send a HEAD request to the server.
55 * httpInitialize() - Initialize the HTTP interface library and set the
56 * default HTTP proxy (if any).
57 * httpOptions() - Send an OPTIONS request to the server.
58 * httpPost() - Send a POST request to the server.
59 * httpPrintf() - Print a formatted string to a HTTP connection.
60 * httpPut() - Send a PUT request to the server.
61 * httpRead() - Read data from a HTTP connection.
a4d04587 62 * httpRead2() - Read data from a HTTP connection.
ef416fc2 63 * _httpReadCDSA() - Read function for CDSA decryption code.
64 * httpReconnect() - Reconnect to a HTTP server...
65 * httpSetCookie() - Set the cookie value(s)...
b423cd4c 66 * httpSetExpect() - Set the Expect: header in a request.
ef416fc2 67 * httpSetField() - Set the value of an HTTP header.
68 * httpSetLength() - Set the content-length and transfer-encoding.
69 * httpTrace() - Send an TRACE request to the server.
70 * httpUpdate() - Update the current HTTP state for incoming data.
71 * httpWait() - Wait for data available on a connection.
72 * httpWrite() - Write data to a HTTP connection.
a4d04587 73 * httpWrite2() - Write data to a HTTP connection.
ef416fc2 74 * _httpWriteCDSA() - Write function for CDSA encryption code.
75 * http_field() - Return the field index for a field name.
76 * http_read_ssl() - Read from a SSL/TLS connection.
77 * http_send() - Send a request with all fields and the trailing
78 * blank line.
79 * http_setup_ssl() - Set up SSL/TLS on a connection.
80 * http_shutdown_ssl() - Shut down SSL/TLS on a connection.
81 * http_upgrade() - Force upgrade to TLS encryption.
82 * http_wait() - Wait for data available on a connection.
83 * http_write() - Write data to a connection.
84 * http_write_ssl() - Write to a SSL/TLS connection.
85 */
86
87/*
88 * Include necessary headers...
89 */
90
91#include "http-private.h"
92#include "globals.h"
93#include "debug.h"
94#include <stdlib.h>
95#include <fcntl.h>
96#include <errno.h>
97#ifndef WIN32
98# include <signal.h>
99# include <sys/time.h>
100# include <sys/resource.h>
101#endif /* !WIN32 */
102
103
104/*
105 * Some operating systems have done away with the Fxxxx constants for
106 * the fcntl() call; this works around that "feature"...
107 */
108
109#ifndef FNONBLK
110# define FNONBLK O_NONBLOCK
111#endif /* !FNONBLK */
112
113
114/*
115 * Local functions...
116 */
117
118static http_field_t http_field(const char *name);
119static int http_send(http_t *http, http_state_t request,
120 const char *uri);
121static int http_wait(http_t *http, int msec);
122static int http_write(http_t *http, const char *buffer,
123 int length);
124static int http_write_chunk(http_t *http, const char *buffer,
125 int length);
126#ifdef HAVE_SSL
127static int http_read_ssl(http_t *http, char *buf, int len);
128static int http_setup_ssl(http_t *http);
129static void http_shutdown_ssl(http_t *http);
130static int http_upgrade(http_t *http);
131static int http_write_ssl(http_t *http, const char *buf, int len);
132#endif /* HAVE_SSL */
133
134
135/*
136 * Local globals...
137 */
138
139static const char * const http_fields[] =
140 {
141 "Accept-Language",
142 "Accept-Ranges",
143 "Authorization",
144 "Connection",
145 "Content-Encoding",
146 "Content-Language",
147 "Content-Length",
148 "Content-Location",
149 "Content-MD5",
150 "Content-Range",
151 "Content-Type",
152 "Content-Version",
153 "Date",
154 "Host",
155 "If-Modified-Since",
156 "If-Unmodified-since",
157 "Keep-Alive",
158 "Last-Modified",
159 "Link",
160 "Location",
161 "Range",
162 "Referer",
163 "Retry-After",
164 "Transfer-Encoding",
165 "Upgrade",
166 "User-Agent",
167 "WWW-Authenticate"
168 };
169
170
ecdc0628 171/*
172 * 'httpBlocking()' - Set blocking/non-blocking behavior on a connection.
173 */
174
175void
176httpBlocking(http_t *http, /* I - HTTP connection */
177 int b) /* I - 1 = blocking, 0 = non-blocking */
178{
179 if (http)
180 http->blocking = b;
181}
182
183
ef416fc2 184/*
185 * 'httpCheck()' - Check to see if there is a pending response from the server.
186 */
187
ecdc0628 188int /* O - 0 = no data, 1 = data available */
189httpCheck(http_t *http) /* I - HTTP connection */
ef416fc2 190{
191 return (httpWait(http, 0));
192}
193
194
195/*
196 * 'httpClearCookie()' - Clear the cookie value(s).
197 *
198 * @since CUPS 1.1.19@
199 */
200
201void
ecdc0628 202httpClearCookie(http_t *http) /* I - HTTP connection */
ef416fc2 203{
204 if (!http)
205 return;
206
207 if (http->cookie)
208 {
209 free(http->cookie);
210 http->cookie = NULL;
211 }
212}
213
214
ecdc0628 215/*
216 * 'httpClearFields()' - Clear HTTP request fields.
217 */
218
219void
220httpClearFields(http_t *http) /* I - HTTP connection */
221{
222 if (http)
223 {
224 memset(http->fields, 0, sizeof(http->fields));
225 httpSetField(http, HTTP_FIELD_HOST, http->hostname);
b423cd4c 226
227 http->expect = (http_status_t)0;
ecdc0628 228 }
229}
230
231
ef416fc2 232/*
233 * 'httpClose()' - Close an HTTP connection...
234 */
235
236void
ecdc0628 237httpClose(http_t *http) /* I - HTTP connection */
ef416fc2 238{
239 DEBUG_printf(("httpClose(http=%p)\n", http));
240
241 if (!http)
242 return;
243
244 httpAddrFreeList(http->addrlist);
245
246 if (http->input_set)
247 free(http->input_set);
248
249 if (http->cookie)
250 free(http->cookie);
251
252#ifdef HAVE_SSL
253 if (http->tls)
254 http_shutdown_ssl(http);
255#endif /* HAVE_SSL */
256
257#ifdef WIN32
258 closesocket(http->fd);
259#else
260 close(http->fd);
261#endif /* WIN32 */
262
263 free(http);
264}
265
266
267/*
268 * 'httpConnect()' - Connect to a HTTP server.
269 */
270
271http_t * /* O - New HTTP connection */
272httpConnect(const char *host, /* I - Host to connect to */
273 int port) /* I - Port number */
274{
275 http_encryption_t encryption; /* Type of encryption to use */
276
277
278 /*
279 * Set the default encryption status...
280 */
281
282 if (port == 443)
283 encryption = HTTP_ENCRYPT_ALWAYS;
284 else
285 encryption = HTTP_ENCRYPT_IF_REQUESTED;
286
287 return (httpConnectEncrypt(host, port, encryption));
288}
289
290
291/*
292 * 'httpConnectEncrypt()' - Connect to a HTTP server using encryption.
293 */
294
295http_t * /* O - New HTTP connection */
296httpConnectEncrypt(
297 const char *host, /* I - Host to connect to */
298 int port, /* I - Port number */
299 http_encryption_t encryption) /* I - Type of encryption to use */
300{
301 http_t *http; /* New HTTP connection */
302 http_addrlist_t *addrlist; /* Host address data */
303 char service[255]; /* Service name */
304
305
306 DEBUG_printf(("httpConnectEncrypt(host=\"%s\", port=%d, encryption=%d)\n",
307 host ? host : "(null)", port, encryption));
308
309 if (!host)
310 return (NULL);
311
312 httpInitialize();
313
314 /*
315 * Lookup the host...
316 */
317
318 sprintf(service, "%d", port);
319
320 if ((addrlist = httpAddrGetList(host, AF_UNSPEC, service)) == NULL)
321 return (NULL);
322
323 /*
324 * Allocate memory for the structure...
325 */
326
327 http = calloc(sizeof(http_t), 1);
328 if (http == NULL)
329 return (NULL);
330
331 http->version = HTTP_1_1;
332 http->blocking = 1;
333 http->activity = time(NULL);
334 http->fd = -1;
335
336 /*
337 * Set the encryption status...
338 */
339
340 if (port == 443) /* Always use encryption for https */
341 http->encryption = HTTP_ENCRYPT_ALWAYS;
342 else
343 http->encryption = encryption;
344
345 /*
346 * Loop through the addresses we have until one of them connects...
347 */
348
349 strlcpy(http->hostname, host, sizeof(http->hostname));
350
351 /*
352 * Connect to the remote system...
353 */
354
355 http->addrlist = addrlist;
356
357 if (!httpReconnect(http))
358 return (http);
359
360 /*
361 * Could not connect to any known address - bail out!
362 */
363
364 httpAddrFreeList(addrlist);
365
366 free(http);
367
368 return (NULL);
369}
370
371
372/*
373 * 'httpDelete()' - Send a DELETE request to the server.
374 */
375
376int /* O - Status of call (0 = success) */
ecdc0628 377httpDelete(http_t *http, /* I - HTTP connection */
ef416fc2 378 const char *uri) /* I - URI to delete */
379{
380 return (http_send(http, HTTP_DELETE, uri));
381}
382
383
384/*
385 * 'httpEncryption()' - Set the required encryption on the link.
386 */
387
388int /* O - -1 on error, 0 on success */
ecdc0628 389httpEncryption(http_t *http, /* I - HTTP connection */
ef416fc2 390 http_encryption_t e) /* I - New encryption preference */
391{
392 DEBUG_printf(("httpEncryption(http=%p, e=%d)\n", http, e));
393
394#ifdef HAVE_SSL
395 if (!http)
396 return (0);
397
398 http->encryption = e;
399
400 if ((http->encryption == HTTP_ENCRYPT_ALWAYS && !http->tls) ||
401 (http->encryption == HTTP_ENCRYPT_NEVER && http->tls))
402 return (httpReconnect(http));
403 else if (http->encryption == HTTP_ENCRYPT_REQUIRED && !http->tls)
404 return (http_upgrade(http));
405 else
406 return (0);
407#else
408 if (e == HTTP_ENCRYPT_ALWAYS || e == HTTP_ENCRYPT_REQUIRED)
409 return (-1);
410 else
411 return (0);
412#endif /* HAVE_SSL */
413}
414
415
ecdc0628 416/*
417 * 'httpError()' - Get the last error on a connection.
418 */
419
420int /* O - Error code (errno) value */
421httpError(http_t *http) /* I - HTTP connection */
422{
423 if (http)
424 return (http->error);
425 else
426 return (EINVAL);
427}
428
429
ef416fc2 430/*
431 * 'httpFlush()' - Flush data from a HTTP connection.
432 */
433
434void
ecdc0628 435httpFlush(http_t *http) /* I - HTTP connection */
ef416fc2 436{
437 char buffer[8192]; /* Junk buffer */
fa73b229 438 int blocking; /* To block or not to block */
ef416fc2 439
440
441 DEBUG_printf(("httpFlush(http=%p), state=%d\n", http, http->state));
442
fa73b229 443 /*
444 * Temporarily set non-blocking mode so we don't get stuck in httpRead()...
445 */
446
447 blocking = http->blocking;
448 http->blocking = 0;
449
450 /*
451 * Read any data we can...
452 */
453
a4d04587 454 while (httpRead2(http, buffer, sizeof(buffer)) > 0);
fa73b229 455
456 /*
457 * Restore blocking and reset the connection if we didn't get all of
458 * the remaining data...
459 */
460
461 http->blocking = blocking;
462
463 if (http->state != HTTP_WAITING && http->fd >= 0)
464 {
465 /*
466 * Didn't get the data back, so close the current connection.
467 */
468
469 http->state = HTTP_WAITING;
470
471#ifdef HAVE_SSL
472 if (http->tls)
473 http_shutdown_ssl(http);
474#endif /* HAVE_SSL */
475
476#ifdef WIN32
477 closesocket(http->fd);
478#else
479 close(http->fd);
480#endif /* WIN32 */
481
482 http->fd = -1;
483 }
ef416fc2 484}
485
486
487/*
488 * 'httpFlushWrite()' - Flush data in write buffer.
489 *
490 * @since CUPS 1.2@
491 */
492
493int /* O - Bytes written or -1 on error */
ecdc0628 494httpFlushWrite(http_t *http) /* I - HTTP connection */
ef416fc2 495{
496 int bytes; /* Bytes written */
497
498
499 DEBUG_printf(("httpFlushWrite(http=%p)\n", http));
500
501 if (!http || !http->wused)
502 return (0);
503
504 if (http->data_encoding == HTTP_ENCODE_CHUNKED)
505 bytes = http_write_chunk(http, http->wbuffer, http->wused);
506 else
507 bytes = http_write(http, http->wbuffer, http->wused);
508
509 http->wused = 0;
510
511 return (bytes);
512}
513
514
515/*
516 * 'httpGet()' - Send a GET request to the server.
517 */
518
519int /* O - Status of call (0 = success) */
ecdc0628 520httpGet(http_t *http, /* I - HTTP connection */
ef416fc2 521 const char *uri) /* I - URI to get */
522{
523 return (http_send(http, HTTP_GET, uri));
524}
525
526
ecdc0628 527/*
528 * 'httpGetBlocking()' - Get the blocking/non-block state of a connection.
529 *
530 * @since CUPS 1.2@
531 */
532
533int /* O - 1 if blocking, 0 if non-blocking */
534httpGetBlocking(http_t *http) /* I - HTTP connection */
535{
536 return (http ? http->blocking : 0);
537}
538
539
540/*
541 * 'httpGetCookie()' - Get any cookie data from the response.
757d2cad 542 *
543 * @since CUPS 1.1.19@
ecdc0628 544 */
545
546const char * /* O - Cookie data or NULL */
547httpGetCookie(http_t *http) /* I - HTTP connecion */
548{
549 return (http ? http->cookie : NULL);
550}
551
552
553/*
554 * 'httpGetFd()' - Get the file descriptor associated with a connection.
555 *
556 * @since CUPS 1.2@
557 */
558
559int /* O - File descriptor or -1 if none */
560httpGetFd(http_t *http) /* I - HTTP connection */
561{
562 return (http ? http->fd : -1);
563}
564
565
566/*
567 * 'httpGetField()' - Get a field value from a request/response.
568 */
569
570const char * /* O - Field value */
571httpGetField(http_t *http, /* I - HTTP connection */
572 http_field_t field) /* I - Field to get */
573{
574 if (!http || field <= HTTP_FIELD_UNKNOWN || field >= HTTP_FIELD_MAX)
575 return (NULL);
576 else
577 return (http->fields[field]);
578}
579
580
581/*
582 * 'httpGetLength()' - Get the amount of data remaining from the
583 * content-length or transfer-encoding fields.
584 *
585 * This function is deprecated and will not return lengths larger than
586 * 2^31 - 1; use httpGetLength2() instead.
587 *
588 * @deprecated@
589 */
590
591int /* O - Content length */
592httpGetLength(http_t *http) /* I - HTTP connection */
593{
594 /*
595 * Get the read content length and return the 32-bit value.
596 */
597
598 if (http)
599 {
600 httpGetLength2(http);
601
602 return (http->_data_remaining);
603 }
604 else
605 return (-1);
606}
607
608
609/*
610 * 'httpGetLength2()' - Get the amount of data remaining from the
611 * content-length or transfer-encoding fields.
612 *
613 * This function returns the complete content length, even for
614 * content larger than 2^31 - 1.
615 *
616 * @since CUPS 1.2@
617 */
618
619off_t /* O - Content length */
620httpGetLength2(http_t *http) /* I - HTTP connection */
621{
622 DEBUG_printf(("httpGetLength2(http=%p), state=%d\n", http, http->state));
623
624 if (!http)
625 return (-1);
626
627 if (!strcasecmp(http->fields[HTTP_FIELD_TRANSFER_ENCODING], "chunked"))
628 {
629 DEBUG_puts("httpGetLength2: chunked request!");
630
631 http->data_encoding = HTTP_ENCODE_CHUNKED;
632 http->data_remaining = 0;
633 }
634 else
635 {
636 http->data_encoding = HTTP_ENCODE_LENGTH;
637
638 /*
639 * The following is a hack for HTTP servers that don't send a
640 * content-length or transfer-encoding field...
641 *
642 * If there is no content-length then the connection must close
643 * after the transfer is complete...
644 */
645
646 if (http->fields[HTTP_FIELD_CONTENT_LENGTH][0] == '\0')
647 http->data_remaining = 2147483647;
648 else
649 http->data_remaining = strtoll(http->fields[HTTP_FIELD_CONTENT_LENGTH],
650 NULL, 10);
651
652 DEBUG_printf(("httpGetLength2: content_length=" CUPS_LLFMT "\n",
653 CUPS_LLCAST http->data_remaining));
654 }
655
656 if (http->data_remaining <= INT_MAX)
657 http->_data_remaining = (int)http->data_remaining;
658 else
659 http->_data_remaining = INT_MAX;
660
661 return (http->data_remaining);
662}
663
664
665/*
666 * 'httpGetStatus()' - Get the status of the last HTTP request.
667 *
668 * @since CUPS 1.2@
669 */
670
671http_status_t /* O - HTTP status */
672httpGetStatus(http_t *http) /* I - HTTP connection */
673{
674 return (http ? http->status : HTTP_ERROR);
675}
676
677
ef416fc2 678/*
679 * 'httpGetSubField()' - Get a sub-field value.
680 *
681 * @deprecated@
682 */
683
684char * /* O - Value or NULL */
ecdc0628 685httpGetSubField(http_t *http, /* I - HTTP connection */
ef416fc2 686 http_field_t field, /* I - Field index */
687 const char *name, /* I - Name of sub-field */
688 char *value) /* O - Value string */
689{
690 return (httpGetSubField2(http, field, name, value, HTTP_MAX_VALUE));
691}
692
693
694/*
695 * 'httpGetSubField2()' - Get a sub-field value.
696 *
697 * @since CUPS 1.2@
698 */
699
700char * /* O - Value or NULL */
ecdc0628 701httpGetSubField2(http_t *http, /* I - HTTP connection */
ef416fc2 702 http_field_t field, /* I - Field index */
703 const char *name, /* I - Name of sub-field */
704 char *value, /* O - Value string */
705 int valuelen) /* I - Size of value buffer */
706{
707 const char *fptr; /* Pointer into field */
708 char temp[HTTP_MAX_VALUE], /* Temporary buffer for name */
709 *ptr, /* Pointer into string buffer */
710 *end; /* End of value buffer */
711
712 DEBUG_printf(("httpGetSubField2(http=%p, field=%d, name=\"%s\", value=%p, valuelen=%d)\n",
713 http, field, name, value, valuelen));
714
715 if (!http || !name || !value || valuelen < 2 ||
ecdc0628 716 field <= HTTP_FIELD_UNKNOWN || field >= HTTP_FIELD_MAX)
ef416fc2 717 return (NULL);
718
719 end = value + valuelen - 1;
720
721 for (fptr = http->fields[field]; *fptr;)
722 {
723 /*
724 * Skip leading whitespace...
725 */
726
727 while (isspace(*fptr & 255))
728 fptr ++;
729
730 if (*fptr == ',')
731 {
732 fptr ++;
733 continue;
734 }
735
736 /*
737 * Get the sub-field name...
738 */
739
740 for (ptr = temp;
741 *fptr && *fptr != '=' && !isspace(*fptr & 255) &&
742 ptr < (temp + sizeof(temp) - 1);
743 *ptr++ = *fptr++);
744
745 *ptr = '\0';
746
747 DEBUG_printf(("httpGetSubField: name=\"%s\"\n", temp));
748
749 /*
750 * Skip trailing chars up to the '='...
751 */
752
753 while (isspace(*fptr & 255))
754 fptr ++;
755
756 if (!*fptr)
757 break;
758
759 if (*fptr != '=')
760 continue;
761
762 /*
763 * Skip = and leading whitespace...
764 */
765
766 fptr ++;
767
768 while (isspace(*fptr & 255))
769 fptr ++;
770
771 if (*fptr == '\"')
772 {
773 /*
774 * Read quoted string...
775 */
776
777 for (ptr = value, fptr ++;
778 *fptr && *fptr != '\"' && ptr < end;
779 *ptr++ = *fptr++);
780
781 *ptr = '\0';
782
783 while (*fptr && *fptr != '\"')
784 fptr ++;
785
786 if (*fptr)
787 fptr ++;
788 }
789 else
790 {
791 /*
792 * Read unquoted string...
793 */
794
795 for (ptr = value;
796 *fptr && !isspace(*fptr & 255) && *fptr != ',' && ptr < end;
797 *ptr++ = *fptr++);
798
799 *ptr = '\0';
800
801 while (*fptr && !isspace(*fptr & 255) && *fptr != ',')
802 fptr ++;
803 }
804
805 DEBUG_printf(("httpGetSubField: value=\"%s\"\n", value));
806
807 /*
808 * See if this is the one...
809 */
810
811 if (!strcmp(name, temp))
812 return (value);
813 }
814
815 value[0] = '\0';
816
817 return (NULL);
818}
819
820
ef416fc2 821/*
822 * 'httpGets()' - Get a line of text from a HTTP connection.
823 */
824
825char * /* O - Line or NULL */
826httpGets(char *line, /* I - Line to read into */
827 int length, /* I - Max length of buffer */
ecdc0628 828 http_t *http) /* I - HTTP connection */
ef416fc2 829{
830 char *lineptr, /* Pointer into line */
831 *lineend, /* End of line */
832 *bufptr, /* Pointer into input buffer */
833 *bufend; /* Pointer to end of buffer */
834 int bytes, /* Number of bytes read */
835 eol; /* End-of-line? */
836
837
838 DEBUG_printf(("httpGets(line=%p, length=%d, http=%p)\n", line, length, http));
839
840 if (http == NULL || line == NULL)
841 return (NULL);
842
843 /*
844 * Read a line from the buffer...
845 */
846
847 lineptr = line;
848 lineend = line + length - 1;
849 eol = 0;
850
851 while (lineptr < lineend)
852 {
853 /*
854 * Pre-load the buffer as needed...
855 */
856
857#ifdef WIN32
858 WSASetLastError(0);
859#else
860 errno = 0;
861#endif /* WIN32 */
862
863 while (http->used == 0)
864 {
865 /*
866 * No newline; see if there is more data to be read...
867 */
868
869 if (!http->blocking && !http_wait(http, 1000))
870 return (NULL);
871
872#ifdef HAVE_SSL
873 if (http->tls)
874 bytes = http_read_ssl(http, http->buffer + http->used,
875 HTTP_MAX_BUFFER - http->used);
876 else
877#endif /* HAVE_SSL */
878 bytes = recv(http->fd, http->buffer + http->used,
879 HTTP_MAX_BUFFER - http->used, 0);
880
881 DEBUG_printf(("httpGets: read %d bytes...\n", bytes));
882
883 if (bytes < 0)
884 {
885 /*
886 * Nope, can't get a line this time...
887 */
888
889#ifdef WIN32
890 if (WSAGetLastError() != http->error)
891 {
892 http->error = WSAGetLastError();
893 continue;
894 }
895
896 DEBUG_printf(("httpGets: recv() error %d!\n", WSAGetLastError()));
897#else
898 DEBUG_printf(("httpGets: recv() error %d!\n", errno));
899
900 if (errno == EINTR)
901 continue;
902 else if (errno != http->error)
903 {
904 http->error = errno;
905 continue;
906 }
907#endif /* WIN32 */
908
909 return (NULL);
910 }
911 else if (bytes == 0)
912 {
913 http->error = EPIPE;
914
915 return (NULL);
916 }
917
918 /*
919 * Yup, update the amount used...
920 */
921
922 http->used += bytes;
923 }
924
925 /*
926 * Now copy as much of the current line as possible...
927 */
928
929 for (bufptr = http->buffer, bufend = http->buffer + http->used;
930 lineptr < lineend && bufptr < bufend;)
931 {
932 if (*bufptr == 0x0a)
933 {
934 eol = 1;
935 bufptr ++;
936 break;
937 }
938 else if (*bufptr == 0x0d)
939 bufptr ++;
940 else
941 *lineptr++ = *bufptr++;
942 }
943
944 http->used -= bufptr - http->buffer;
945 if (http->used > 0)
946 memmove(http->buffer, bufptr, http->used);
947
948 if (eol)
949 {
950 /*
951 * End of line...
952 */
953
954 http->activity = time(NULL);
955
956 *lineptr = '\0';
957
958 DEBUG_printf(("httpGets: Returning \"%s\"\n", line));
959
960 return (line);
961 }
962 }
963
964 DEBUG_puts("httpGets: No new line available!");
965
966 return (NULL);
967}
968
969
970/*
971 * 'httpHead()' - Send a HEAD request to the server.
972 */
973
974int /* O - Status of call (0 = success) */
ecdc0628 975httpHead(http_t *http, /* I - HTTP connection */
ef416fc2 976 const char *uri) /* I - URI for head */
977{
978 return (http_send(http, HTTP_HEAD, uri));
979}
980
981
982/*
983 * 'httpInitialize()' - Initialize the HTTP interface library and set the
984 * default HTTP proxy (if any).
985 */
986
987void
988httpInitialize(void)
989{
990#ifdef HAVE_LIBSSL
991# ifndef WIN32
992 struct timeval curtime; /* Current time in microseconds */
993# endif /* !WIN32 */
994 int i; /* Looping var */
995 unsigned char data[1024]; /* Seed data */
996#endif /* HAVE_LIBSSL */
997
998#ifdef WIN32
999 WSADATA winsockdata; /* WinSock data */
1000 static int initialized = 0; /* Has WinSock been initialized? */
1001
1002
1003 if (!initialized)
1004 WSAStartup(MAKEWORD(1,1), &winsockdata);
fa73b229 1005#elif !defined(SO_NOSIGPIPE)
ef416fc2 1006 /*
1007 * Ignore SIGPIPE signals...
1008 */
1009
fa73b229 1010# ifdef HAVE_SIGSET
1011 sigset(SIGPIPE, SIG_IGN);
1012# elif defined(HAVE_SIGACTION)
1013 struct sigaction action; /* POSIX sigaction data */
1014
1015
ef416fc2 1016 memset(&action, 0, sizeof(action));
1017 action.sa_handler = SIG_IGN;
1018 sigaction(SIGPIPE, &action, NULL);
fa73b229 1019# else
ef416fc2 1020 signal(SIGPIPE, SIG_IGN);
fa73b229 1021# endif /* !SO_NOSIGPIPE */
ef416fc2 1022#endif /* WIN32 */
1023
1024#ifdef HAVE_GNUTLS
1025 gnutls_global_init();
1026#endif /* HAVE_GNUTLS */
1027
1028#ifdef HAVE_LIBSSL
1029 SSL_load_error_strings();
1030 SSL_library_init();
1031
1032 /*
1033 * Using the current time is a dubious random seed, but on some systems
1034 * it is the best we can do (on others, this seed isn't even used...)
1035 */
1036
1037#ifdef WIN32
1038#else
1039 gettimeofday(&curtime, NULL);
1040 srand(curtime.tv_sec + curtime.tv_usec);
1041#endif /* WIN32 */
1042
1043 for (i = 0; i < sizeof(data); i ++)
1044 data[i] = rand(); /* Yes, this is a poor source of random data... */
1045
1046 RAND_seed(&data, sizeof(data));
1047#endif /* HAVE_LIBSSL */
1048}
1049
1050
1051/*
1052 * 'httpOptions()' - Send an OPTIONS request to the server.
1053 */
1054
1055int /* O - Status of call (0 = success) */
ecdc0628 1056httpOptions(http_t *http, /* I - HTTP connection */
ef416fc2 1057 const char *uri) /* I - URI for options */
1058{
1059 return (http_send(http, HTTP_OPTIONS, uri));
1060}
1061
1062
1063/*
1064 * 'httpPost()' - Send a POST request to the server.
1065 */
1066
1067int /* O - Status of call (0 = success) */
ecdc0628 1068httpPost(http_t *http, /* I - HTTP connection */
ef416fc2 1069 const char *uri) /* I - URI for post */
1070{
1071 return (http_send(http, HTTP_POST, uri));
1072}
1073
1074
1075/*
1076 * 'httpPrintf()' - Print a formatted string to a HTTP connection.
ecdc0628 1077 *
1078 * @private@
ef416fc2 1079 */
1080
1081int /* O - Number of bytes written */
ecdc0628 1082httpPrintf(http_t *http, /* I - HTTP connection */
ef416fc2 1083 const char *format, /* I - printf-style format string */
1084 ...) /* I - Additional args as needed */
1085{
1086 int bytes; /* Number of bytes to write */
1087 char buf[16384]; /* Buffer for formatted string */
1088 va_list ap; /* Variable argument pointer */
1089
1090
1091 DEBUG_printf(("httpPrintf(http=%p, format=\"%s\", ...)\n", http, format));
1092
1093 va_start(ap, format);
1094 bytes = vsnprintf(buf, sizeof(buf), format, ap);
1095 va_end(ap);
1096
1097 DEBUG_printf(("httpPrintf: %s", buf));
1098
1099 if (http->wused)
1100 {
1101 DEBUG_puts(" flushing existing data...");
1102
1103 if (httpFlushWrite(http) < 0)
1104 return (-1);
1105 }
1106
1107 return (http_write(http, buf, bytes));
1108}
1109
1110
1111/*
1112 * 'httpPut()' - Send a PUT request to the server.
1113 */
1114
1115int /* O - Status of call (0 = success) */
ecdc0628 1116httpPut(http_t *http, /* I - HTTP connection */
ef416fc2 1117 const char *uri) /* I - URI to put */
1118{
1119 return (http_send(http, HTTP_PUT, uri));
1120}
1121
1122
1123/*
1124 * 'httpRead()' - Read data from a HTTP connection.
a4d04587 1125 *
1126 * This function is deprecated. Use the httpRead2() function which can
1127 * read more than 2GB of data.
1128 *
1129 * @deprecated@
ef416fc2 1130 */
1131
1132int /* O - Number of bytes read */
ecdc0628 1133httpRead(http_t *http, /* I - HTTP connection */
ef416fc2 1134 char *buffer, /* I - Buffer for data */
1135 int length) /* I - Maximum number of bytes */
1136{
a4d04587 1137 return ((int)httpRead2(http, buffer, length));
1138}
1139
1140
1141/*
1142 * 'httpRead2()' - Read data from a HTTP connection.
ecdc0628 1143 *
1144 * @since CUPS 1.2@
a4d04587 1145 */
1146
1147ssize_t /* O - Number of bytes read */
ecdc0628 1148httpRead2(http_t *http, /* I - HTTP connection */
a4d04587 1149 char *buffer, /* I - Buffer for data */
1150 size_t length) /* I - Maximum number of bytes */
1151{
1152 ssize_t bytes; /* Bytes read */
ef416fc2 1153 char len[32]; /* Length string */
1154
1155
1156 DEBUG_printf(("httpRead(http=%p, buffer=%p, length=%d)\n",
1157 http, buffer, length));
1158
1159 if (http == NULL || buffer == NULL)
1160 return (-1);
1161
1162 http->activity = time(NULL);
1163
1164 if (length <= 0)
1165 return (0);
1166
1167 if (http->data_encoding == HTTP_ENCODE_CHUNKED &&
1168 http->data_remaining <= 0)
1169 {
a4d04587 1170 DEBUG_puts("httpRead2: Getting chunk length...");
ef416fc2 1171
1172 if (httpGets(len, sizeof(len), http) == NULL)
1173 {
a4d04587 1174 DEBUG_puts("httpRead2: Could not get length!");
ef416fc2 1175 return (0);
1176 }
1177
1178 http->data_remaining = strtoll(len, NULL, 16);
1179 if (http->data_remaining < 0)
1180 {
a4d04587 1181 DEBUG_puts("httpRead2: Negative chunk length!");
ef416fc2 1182 return (0);
1183 }
1184 }
1185
a4d04587 1186 DEBUG_printf(("httpRead2: data_remaining=" CUPS_LLFMT "\n",
ef416fc2 1187 CUPS_LLCAST http->data_remaining));
1188
1189 if (http->data_remaining <= 0)
1190 {
1191 /*
1192 * A zero-length chunk ends a transfer; unless we are reading POST
1193 * data, go idle...
1194 */
1195
1196 if (http->data_encoding == HTTP_ENCODE_CHUNKED)
1197 httpGets(len, sizeof(len), http);
1198
1199 if (http->state == HTTP_POST_RECV)
1200 http->state ++;
1201 else
1202 http->state = HTTP_WAITING;
1203
1204 /*
1205 * Prevent future reads for this request...
1206 */
1207
1208 http->data_encoding = HTTP_ENCODE_LENGTH;
1209
1210 return (0);
1211 }
1212 else if (length > http->data_remaining)
1213 length = http->data_remaining;
1214
1215 if (http->used == 0 && length <= 256)
1216 {
1217 /*
1218 * Buffer small reads for better performance...
1219 */
1220
1221 if (!http->blocking && !httpWait(http, 1000))
1222 return (0);
1223
1224 if (http->data_remaining > sizeof(http->buffer))
1225 bytes = sizeof(http->buffer);
1226 else
1227 bytes = http->data_remaining;
1228
1229#ifdef HAVE_SSL
1230 if (http->tls)
1231 bytes = http_read_ssl(http, http->buffer, bytes);
1232 else
1233#endif /* HAVE_SSL */
1234 {
a4d04587 1235 DEBUG_printf(("httpRead2: reading %d bytes from socket into buffer...\n",
ef416fc2 1236 bytes));
1237
1238 bytes = recv(http->fd, http->buffer, bytes, 0);
1239
a4d04587 1240 DEBUG_printf(("httpRead2: read %d bytes from socket into buffer...\n",
ef416fc2 1241 bytes));
1242 }
1243
1244 if (bytes > 0)
1245 http->used = bytes;
1246 else if (bytes < 0)
1247 {
1248#ifdef WIN32
1249 http->error = WSAGetLastError();
1250 return (-1);
1251#else
1252 if (errno != EINTR)
1253 {
1254 http->error = errno;
1255 return (-1);
1256 }
1257#endif /* WIN32 */
1258 }
1259 else
1260 {
1261 http->error = EPIPE;
1262 return (0);
1263 }
1264 }
1265
1266 if (http->used > 0)
1267 {
1268 if (length > http->used)
1269 length = http->used;
1270
1271 bytes = length;
1272
a4d04587 1273 DEBUG_printf(("httpRead2: grabbing %d bytes from input buffer...\n", bytes));
ef416fc2 1274
1275 memcpy(buffer, http->buffer, length);
1276 http->used -= length;
1277
1278 if (http->used > 0)
1279 memmove(http->buffer, http->buffer + length, http->used);
1280 }
1281#ifdef HAVE_SSL
1282 else if (http->tls)
1283 {
1284 if (!http->blocking && !httpWait(http, 1000))
1285 return (0);
1286
1287 bytes = http_read_ssl(http, buffer, length);
1288 }
1289#endif /* HAVE_SSL */
1290 else
1291 {
1292 if (!http->blocking && !httpWait(http, 1000))
1293 return (0);
1294
a4d04587 1295 DEBUG_printf(("httpRead2: reading %d bytes from socket...\n", length));
ef416fc2 1296
1297 while ((bytes = recv(http->fd, buffer, length, 0)) < 0)
1298 if (errno != EINTR)
1299 break;
1300
a4d04587 1301 DEBUG_printf(("httpRead2: read %d bytes from socket...\n", bytes));
ef416fc2 1302 }
1303
1304 if (bytes > 0)
1305 {
1306 http->data_remaining -= bytes;
1307
1308 if (http->data_remaining <= INT_MAX)
1309 http->_data_remaining = (int)http->data_remaining;
1310 else
1311 http->_data_remaining = INT_MAX;
1312 }
1313 else if (bytes < 0)
1314 {
1315#ifdef WIN32
1316 http->error = WSAGetLastError();
1317#else
1318 if (errno == EINTR)
1319 bytes = 0;
1320 else
1321 http->error = errno;
1322#endif /* WIN32 */
1323 }
1324 else
1325 {
1326 http->error = EPIPE;
1327 return (0);
1328 }
1329
1330 if (http->data_remaining == 0)
1331 {
1332 if (http->data_encoding == HTTP_ENCODE_CHUNKED)
1333 httpGets(len, sizeof(len), http);
1334
1335 if (http->data_encoding != HTTP_ENCODE_CHUNKED)
1336 {
1337 if (http->state == HTTP_POST_RECV)
1338 http->state ++;
1339 else
1340 http->state = HTTP_WAITING;
1341 }
1342 }
1343
1344#ifdef DEBUG
1345 {
1346 int i, j, ch;
a4d04587 1347 printf("httpRead2: Read %d bytes:\n", bytes);
ef416fc2 1348 for (i = 0; i < bytes; i += 16)
1349 {
1350 printf(" ");
1351
1352 for (j = 0; j < 16 && (i + j) < bytes; j ++)
1353 printf(" %02X", buffer[i + j] & 255);
1354
1355 while (j < 16)
1356 {
1357 printf(" ");
1358 j ++;
1359 }
1360
1361 printf(" ");
1362 for (j = 0; j < 16 && (i + j) < bytes; j ++)
1363 {
1364 ch = buffer[i + j] & 255;
1365
fa73b229 1366 if (ch < ' ' || ch >= 127)
ef416fc2 1367 ch = '.';
1368
1369 putchar(ch);
1370 }
1371 putchar('\n');
1372 }
1373 }
1374#endif /* DEBUG */
1375
1376 return (bytes);
1377}
1378
1379
1380#if defined(HAVE_SSL) && defined(HAVE_CDSASSL)
1381/*
1382 * '_httpReadCDSA()' - Read function for CDSA decryption code.
1383 */
1384
1385OSStatus /* O - -1 on error, 0 on success */
1386_httpReadCDSA(
1387 SSLConnectionRef connection, /* I - SSL/TLS connection */
1388 void *data, /* I - Data buffer */
1389 size_t *dataLength) /* IO - Number of bytes */
1390{
e53920b9 1391 OSStatus result; /* Return value */
1392 ssize_t bytes; /* Number of bytes read */
1393 cdsa_conn_ref_t u; /* Connection reference union */
1394
1395
1396 u.connection = connection;
ef416fc2 1397
b423cd4c 1398 do
e53920b9 1399 bytes = recv(u.sock, data, *dataLength, 0);
b423cd4c 1400 while (bytes == -1 && errno == EINTR);
fa73b229 1401
b423cd4c 1402 if (bytes == *dataLength)
1403 result = 0;
1404 else if (bytes > 0)
1405 {
1406 *dataLength = bytes;
1407 result = errSSLWouldBlock;
1408 }
1409 else
1410 {
1411 *dataLength = 0;
fa73b229 1412
1413 if (bytes == 0)
b423cd4c 1414 result = errSSLClosedAbort;
1415 else if (errno == EAGAIN)
1416 result = errSSLWouldBlock;
1417 else if (errno == EPIPE)
1418 result = errSSLClosedAbort;
1419 else
1420 result = errSSLInternal;
ef416fc2 1421 }
b423cd4c 1422
1423 return result;
ef416fc2 1424}
1425#endif /* HAVE_SSL && HAVE_CDSASSL */
1426
1427
1428/*
ecdc0628 1429 * 'httpReconnect()' - Reconnect to a HTTP server.
ef416fc2 1430 */
1431
1432int /* O - 0 on success, non-zero on failure */
ecdc0628 1433httpReconnect(http_t *http) /* I - HTTP connection */
ef416fc2 1434{
1435 http_addrlist_t *addr; /* Connected address */
1436
1437
1438 DEBUG_printf(("httpReconnect(http=%p)\n", http));
1439
1440 if (!http)
1441 return (-1);
1442
1443#ifdef HAVE_SSL
1444 if (http->tls)
1445 http_shutdown_ssl(http);
1446#endif /* HAVE_SSL */
1447
1448 /*
1449 * Close any previously open socket...
1450 */
1451
1452 if (http->fd >= 0)
bd7854cb 1453 {
ef416fc2 1454#ifdef WIN32
1455 closesocket(http->fd);
1456#else
1457 close(http->fd);
1458#endif /* WIN32 */
1459
bd7854cb 1460 http->fd = -1;
1461 }
1462
ef416fc2 1463 /*
1464 * Connect to the server...
1465 */
1466
1467 if ((addr = httpAddrConnect(http->addrlist, &(http->fd))) == NULL)
1468 {
1469 /*
1470 * Unable to connect...
1471 */
1472
1473#ifdef WIN32
1474 http->error = WSAGetLastError();
1475#else
1476 http->error = errno;
1477#endif /* WIN32 */
1478 http->status = HTTP_ERROR;
1479
1480 return (-1);
1481 }
1482
1483 http->hostaddr = &(addr->addr);
1484 http->error = 0;
1485 http->status = HTTP_CONTINUE;
1486
1487#ifdef HAVE_SSL
1488 if (http->encryption == HTTP_ENCRYPT_ALWAYS)
1489 {
1490 /*
1491 * Always do encryption via SSL.
1492 */
1493
1494 if (http_setup_ssl(http) != 0)
1495 {
1496#ifdef WIN32
1497 closesocket(http->fd);
1498#else
1499 close(http->fd);
1500#endif /* WIN32 */
1501
1502 return (-1);
1503 }
1504 }
1505 else if (http->encryption == HTTP_ENCRYPT_REQUIRED)
1506 return (http_upgrade(http));
1507#endif /* HAVE_SSL */
1508
1509 return (0);
1510}
1511
1512
1513/*
1514 * 'httpSetCookie()' - Set the cookie value(s)...
1515 *
1516 * @since CUPS 1.1.19@
1517 */
1518
1519void
1520httpSetCookie(http_t *http, /* I - Connection */
1521 const char *cookie) /* I - Cookie string */
1522{
1523 if (!http)
1524 return;
1525
1526 if (http->cookie)
1527 free(http->cookie);
1528
1529 if (cookie)
1530 http->cookie = strdup(cookie);
1531 else
1532 http->cookie = NULL;
1533}
1534
1535
b423cd4c 1536/*
1537 * 'httpSetExpect()' - Set the Expect: header in a request.
1538 *
1539 * Currently only HTTP_CONTINUE is supported for the "expect" argument.
1540 *
1541 * @since CUPS 1.2@
1542 */
1543
1544void
1545httpSetExpect(http_t *http, /* I - HTTP connection */
1546 http_status_t expect) /* I - HTTP status to expect (HTTP_CONTINUE) */
1547{
1548 if (http)
1549 http->expect = expect;
1550}
1551
1552
ef416fc2 1553/*
1554 * 'httpSetField()' - Set the value of an HTTP header.
1555 */
1556
1557void
ecdc0628 1558httpSetField(http_t *http, /* I - HTTP connection */
ef416fc2 1559 http_field_t field, /* I - Field index */
1560 const char *value) /* I - Value */
1561{
1562 if (http == NULL ||
1563 field < HTTP_FIELD_ACCEPT_LANGUAGE ||
1564 field > HTTP_FIELD_WWW_AUTHENTICATE ||
1565 value == NULL)
1566 return;
1567
1568 strlcpy(http->fields[field], value, HTTP_MAX_VALUE);
1569}
1570
1571
1572/*
1573 * 'httpSetLength()' - Set the content-length and content-encoding.
1574 *
1575 * @since CUPS 1.2@
1576 */
1577
1578void
ecdc0628 1579httpSetLength(http_t *http, /* I - HTTP connection */
ef416fc2 1580 size_t length) /* I - Length (0 for chunked) */
1581{
1582 if (!http)
1583 return;
1584
1585 if (!length)
1586 {
1587 strcpy(http->fields[HTTP_FIELD_TRANSFER_ENCODING], "chunked");
1588 http->fields[HTTP_FIELD_CONTENT_LENGTH][0] = '\0';
1589 }
1590 else
1591 {
1592 http->fields[HTTP_FIELD_TRANSFER_ENCODING][0] = '\0';
1593 snprintf(http->fields[HTTP_FIELD_CONTENT_LENGTH], HTTP_MAX_VALUE,
1594 CUPS_LLFMT, CUPS_LLCAST length);
1595 }
1596}
1597
1598
1599/*
1600 * 'httpTrace()' - Send an TRACE request to the server.
1601 */
1602
1603int /* O - Status of call (0 = success) */
ecdc0628 1604httpTrace(http_t *http, /* I - HTTP connection */
ef416fc2 1605 const char *uri) /* I - URI for trace */
1606{
1607 return (http_send(http, HTTP_TRACE, uri));
1608}
1609
1610
1611/*
1612 * 'httpUpdate()' - Update the current HTTP state for incoming data.
1613 */
1614
1615http_status_t /* O - HTTP status */
ecdc0628 1616httpUpdate(http_t *http) /* I - HTTP connection */
ef416fc2 1617{
1618 char line[32768], /* Line from connection... */
1619 *value; /* Pointer to value on line */
1620 http_field_t field; /* Field index */
1621 int major, minor, /* HTTP version numbers */
1622 status; /* Request status */
1623
1624
1625 DEBUG_printf(("httpUpdate(http=%p), state=%d\n", http, http->state));
1626
1627 /*
1628 * Flush pending data, if any...
1629 */
1630
1631 if (http->wused)
1632 {
1633 DEBUG_puts(" flushing buffer...");
1634
1635 if (httpFlushWrite(http) < 0)
1636 return (HTTP_ERROR);
1637 }
1638
1639 /*
1640 * If we haven't issued any commands, then there is nothing to "update"...
1641 */
1642
1643 if (http->state == HTTP_WAITING)
1644 return (HTTP_CONTINUE);
1645
1646 /*
1647 * Grab all of the lines we can from the connection...
1648 */
1649
1650 while (httpGets(line, sizeof(line), http) != NULL)
1651 {
1652 DEBUG_printf(("httpUpdate: Got \"%s\"\n", line));
1653
1654 if (line[0] == '\0')
1655 {
1656 /*
1657 * Blank line means the start of the data section (if any). Return
1658 * the result code, too...
1659 *
1660 * If we get status 100 (HTTP_CONTINUE), then we *don't* change states.
1661 * Instead, we just return HTTP_CONTINUE to the caller and keep on
1662 * tryin'...
1663 */
1664
1665 if (http->status == HTTP_CONTINUE)
1666 return (http->status);
1667
1668 if (http->status < HTTP_BAD_REQUEST)
1669 http->digest_tries = 0;
1670
1671#ifdef HAVE_SSL
1672 if (http->status == HTTP_SWITCHING_PROTOCOLS && !http->tls)
1673 {
1674 if (http_setup_ssl(http) != 0)
1675 {
1676# ifdef WIN32
1677 closesocket(http->fd);
1678# else
1679 close(http->fd);
1680# endif /* WIN32 */
1681
1682 return (HTTP_ERROR);
1683 }
1684
1685 return (HTTP_CONTINUE);
1686 }
1687#endif /* HAVE_SSL */
1688
1689 httpGetLength2(http);
1690
1691 switch (http->state)
1692 {
1693 case HTTP_GET :
1694 case HTTP_POST :
1695 case HTTP_POST_RECV :
1696 case HTTP_PUT :
1697 http->state ++;
1698 case HTTP_POST_SEND :
e1d6a774 1699 case HTTP_HEAD :
ef416fc2 1700 break;
1701
1702 default :
1703 http->state = HTTP_WAITING;
1704 break;
1705 }
1706
1707 return (http->status);
1708 }
1709 else if (strncmp(line, "HTTP/", 5) == 0)
1710 {
1711 /*
1712 * Got the beginning of a response...
1713 */
1714
1715 if (sscanf(line, "HTTP/%d.%d%d", &major, &minor, &status) != 3)
1716 return (HTTP_ERROR);
1717
1718 http->version = (http_version_t)(major * 100 + minor);
1719 http->status = (http_status_t)status;
1720 }
1721 else if ((value = strchr(line, ':')) != NULL)
1722 {
1723 /*
1724 * Got a value...
1725 */
1726
1727 *value++ = '\0';
1728 while (isspace(*value & 255))
1729 value ++;
1730
1731 /*
1732 * Be tolerants of servers that send unknown attribute fields...
1733 */
1734
1735 if (!strcasecmp(line, "expect"))
1736 {
1737 /*
1738 * "Expect: 100-continue" or similar...
1739 */
1740
1741 http->expect = (http_status_t)atoi(value);
1742 }
1743 else if (!strcasecmp(line, "cookie"))
1744 {
1745 /*
1746 * "Cookie: name=value[; name=value ...]" - replaces previous cookies...
1747 */
1748
1749 httpSetCookie(http, value);
1750 }
1751 else if ((field = http_field(line)) == HTTP_FIELD_UNKNOWN)
1752 {
1753 DEBUG_printf(("httpUpdate: unknown field %s seen!\n", line));
1754 continue;
1755 }
1756 else
1757 httpSetField(http, field, value);
1758 }
1759 else
1760 {
1761 http->status = HTTP_ERROR;
1762 return (HTTP_ERROR);
1763 }
1764 }
1765
1766 /*
1767 * See if there was an error...
1768 */
1769
1770 if (http->error == EPIPE && http->status > HTTP_CONTINUE)
1771 return (http->status);
1772
1773 if (http->error)
1774 {
1775 DEBUG_printf(("httpUpdate: socket error %d - %s\n", http->error,
1776 strerror(http->error)));
1777 http->status = HTTP_ERROR;
1778 return (HTTP_ERROR);
1779 }
1780
1781 /*
1782 * If we haven't already returned, then there is nothing new...
1783 */
1784
1785 return (HTTP_CONTINUE);
1786}
1787
1788
1789/*
1790 * 'httpWait()' - Wait for data available on a connection.
1791 *
1792 * @since CUPS 1.1.19@
1793 */
1794
1795int /* O - 1 if data is available, 0 otherwise */
ecdc0628 1796httpWait(http_t *http, /* I - HTTP connection */
ef416fc2 1797 int msec) /* I - Milliseconds to wait */
1798{
1799 /*
1800 * First see if there is data in the buffer...
1801 */
1802
1803 if (http == NULL)
1804 return (0);
1805
1806 if (http->used)
1807 return (1);
1808
1809 /*
1810 * If not, check the SSL/TLS buffers and do a select() on the connection...
1811 */
1812
1813 return (http_wait(http, msec));
1814}
1815
1816
1817/*
1818 * 'httpWrite()' - Write data to a HTTP connection.
a4d04587 1819 *
1820 * This function is deprecated. Use the httpWrite2() function which can
1821 * write more than 2GB of data.
1822 *
1823 * @deprecated@
ef416fc2 1824 */
1825
1826int /* O - Number of bytes written */
ecdc0628 1827httpWrite(http_t *http, /* I - HTTP connection */
ef416fc2 1828 const char *buffer, /* I - Buffer for data */
1829 int length) /* I - Number of bytes to write */
1830{
a4d04587 1831 return ((int)httpWrite2(http, buffer, length));
1832}
1833
1834
1835/*
1836 * 'httpWrite2()' - Write data to a HTTP connection.
ecdc0628 1837 *
1838 * @since CUPS 1.2@
a4d04587 1839 */
1840
1841ssize_t /* O - Number of bytes written */
ecdc0628 1842httpWrite2(http_t *http, /* I - HTTP connection */
a4d04587 1843 const char *buffer, /* I - Buffer for data */
1844 size_t length) /* I - Number of bytes to write */
1845{
1846 ssize_t bytes; /* Bytes written */
ef416fc2 1847
1848
1849 DEBUG_printf(("httpWrite(http=%p, buffer=%p, length=%d)\n", http,
1850 buffer, length));
1851
1852 /*
1853 * Range check input...
1854 */
1855
1856 if (http == NULL || buffer == NULL)
1857 return (-1);
1858
1859 /*
1860 * Mark activity on the connection...
1861 */
1862
1863 http->activity = time(NULL);
1864
1865 /*
1866 * Buffer small writes for better performance...
1867 */
1868
1869 if (length > 0)
1870 {
1871 if (http->wused && (length + http->wused) > sizeof(http->wbuffer))
1872 {
1873 DEBUG_printf((" flushing buffer (wused=%d, length=%d)\n",
1874 http->wused, length));
1875
1876 httpFlushWrite(http);
1877 }
1878
1879 if ((length + http->wused) <= sizeof(http->wbuffer))
1880 {
1881 /*
1882 * Write to buffer...
1883 */
1884
1885 DEBUG_printf((" copying %d bytes to wbuffer...\n", length));
1886
1887 memcpy(http->wbuffer + http->wused, buffer, length);
1888 http->wused += length;
1889 bytes = length;
1890 }
1891 else
1892 {
1893 /*
1894 * Otherwise write the data directly...
1895 */
1896
1897 DEBUG_printf((" writing %d bytes to socket...\n", length));
1898
1899 if (http->data_encoding == HTTP_ENCODE_CHUNKED)
1900 bytes = http_write_chunk(http, buffer, length);
1901 else
1902 bytes = http_write(http, buffer, length);
1903
1904 DEBUG_printf((" wrote %d bytes...\n", bytes));
1905 }
1906
1907 if (http->data_encoding == HTTP_ENCODE_LENGTH)
1908 http->data_remaining -= bytes;
1909 }
1910 else
1911 bytes = 0;
1912
1913 /*
1914 * Handle end-of-request processing...
1915 */
1916
1917 if ((http->data_encoding == HTTP_ENCODE_CHUNKED && length == 0) ||
1918 (http->data_encoding == HTTP_ENCODE_LENGTH && http->data_remaining == 0))
1919 {
1920 /*
1921 * Finished with the transfer; unless we are sending POST or PUT
1922 * data, go idle...
1923 */
1924
1925 DEBUG_puts("httpWrite: changing states...");
1926
1927 if (http->wused)
1928 httpFlushWrite(http);
1929
1930 if (http->data_encoding == HTTP_ENCODE_CHUNKED)
1931 {
1932 /*
1933 * Send a 0-length chunk at the end of the request...
1934 */
1935
1936 http_write(http, "0\r\n\r\n", 5);
1937
1938 /*
1939 * Reset the data state...
1940 */
1941
1942 http->data_encoding = HTTP_ENCODE_LENGTH;
1943 http->data_remaining = 0;
1944 }
1945
1946 if (http->state == HTTP_POST_RECV)
1947 http->state ++;
1948 else if (http->state == HTTP_PUT_RECV)
1949 http->state = HTTP_STATUS;
1950 else
1951 http->state = HTTP_WAITING;
1952 }
1953
1954 return (bytes);
1955}
1956
1957
1958#if defined(HAVE_SSL) && defined(HAVE_CDSASSL)
1959/*
1960 * '_httpWriteCDSA()' - Write function for CDSA encryption code.
1961 */
1962
1963OSStatus /* O - -1 on error, 0 on success */
1964_httpWriteCDSA(
1965 SSLConnectionRef connection, /* I - SSL/TLS connection */
1966 const void *data, /* I - Data buffer */
1967 size_t *dataLength) /* IO - Number of bytes */
1968{
e53920b9 1969 OSStatus result; /* Return value */
1970 ssize_t bytes; /* Number of bytes read */
1971 cdsa_conn_ref_t u; /* Connection reference union */
1972
1973
1974 u.connection = connection;
ef416fc2 1975
b423cd4c 1976 do
e53920b9 1977 bytes = write(u.sock, data, *dataLength);
b423cd4c 1978 while (bytes == -1 && errno == EINTR);
fa73b229 1979
b423cd4c 1980 if (bytes == *dataLength)
1981 result = 0;
1982 else if (bytes >= 0)
1983 {
1984 *dataLength = bytes;
1985 result = errSSLWouldBlock;
1986 }
1987 else
1988 {
1989 *dataLength = 0;
1990
fa73b229 1991 if (errno == EAGAIN)
b423cd4c 1992 result = errSSLWouldBlock;
1993 else if (errno == EPIPE)
1994 result = errSSLClosedAbort;
1995 else
1996 result = errSSLInternal;
ef416fc2 1997 }
b423cd4c 1998
1999 return result;
ef416fc2 2000}
2001#endif /* HAVE_SSL && HAVE_CDSASSL */
2002
2003
2004/*
2005 * 'http_field()' - Return the field index for a field name.
2006 */
2007
2008static http_field_t /* O - Field index */
2009http_field(const char *name) /* I - String name */
2010{
2011 int i; /* Looping var */
2012
2013
2014 for (i = 0; i < HTTP_FIELD_MAX; i ++)
2015 if (strcasecmp(name, http_fields[i]) == 0)
2016 return ((http_field_t)i);
2017
2018 return (HTTP_FIELD_UNKNOWN);
2019}
2020
2021
2022#ifdef HAVE_SSL
2023/*
2024 * 'http_read_ssl()' - Read from a SSL/TLS connection.
2025 */
2026
2027static int /* O - Bytes read */
ecdc0628 2028http_read_ssl(http_t *http, /* I - HTTP connection */
ef416fc2 2029 char *buf, /* I - Buffer to store data */
2030 int len) /* I - Length of buffer */
2031{
2032# if defined(HAVE_LIBSSL)
2033 return (SSL_read((SSL *)(http->tls), buf, len));
2034
2035# elif defined(HAVE_GNUTLS)
2036 return (gnutls_record_recv(((http_tls_t *)(http->tls))->session, buf, len));
2037
2038# elif defined(HAVE_CDSASSL)
fa73b229 2039 int result; /* Return value */
ef416fc2 2040 OSStatus error; /* Error info */
2041 size_t processed; /* Number of bytes processed */
2042
2043
2044 error = SSLRead((SSLContextRef)http->tls, buf, len, &processed);
2045
fa73b229 2046 switch (error)
ef416fc2 2047 {
fa73b229 2048 case 0 :
2049 result = (int)processed;
2050 break;
2051 case errSSLClosedGraceful :
2052 result = 0;
2053 break;
2054 case errSSLWouldBlock :
b423cd4c 2055 if (processed)
2056 result = (int)processed;
2057 else
2058 {
2059 result = -1;
2060 errno = EINTR;
2061 }
fa73b229 2062 break;
2063 default :
2064 errno = EPIPE;
2065 result = -1;
2066 break;
ef416fc2 2067 }
fa73b229 2068
2069 return (result);
ef416fc2 2070# endif /* HAVE_LIBSSL */
2071}
2072#endif /* HAVE_SSL */
2073
2074
2075/*
2076 * 'http_send()' - Send a request with all fields and the trailing blank line.
2077 */
2078
2079static int /* O - 0 on success, non-zero on error */
ecdc0628 2080http_send(http_t *http, /* I - HTTP connection */
ef416fc2 2081 http_state_t request, /* I - Request code */
2082 const char *uri) /* I - URI */
2083{
2084 int i; /* Looping var */
2085 char *ptr, /* Pointer in buffer */
2086 buf[1024]; /* Encoded URI buffer */
2087 static const char * const codes[] =
2088 { /* Request code strings */
2089 NULL,
2090 "OPTIONS",
2091 "GET",
2092 NULL,
2093 "HEAD",
2094 "POST",
2095 NULL,
2096 NULL,
2097 "PUT",
2098 NULL,
2099 "DELETE",
2100 "TRACE",
2101 "CLOSE"
2102 };
2103 static const char hex[] = "0123456789ABCDEF";
2104 /* Hex digits */
2105
2106
2107 DEBUG_printf(("http_send(http=%p, request=HTTP_%s, uri=\"%s\")\n",
2108 http, codes[request], uri));
2109
2110 if (http == NULL || uri == NULL)
2111 return (-1);
2112
2113 /*
2114 * Set the User-Agent field if it isn't already...
2115 */
2116
2117 if (!http->fields[HTTP_FIELD_USER_AGENT][0])
2118 httpSetField(http, HTTP_FIELD_USER_AGENT, CUPS_MINIMAL);
2119
2120 /*
2121 * Encode the URI as needed...
2122 */
2123
2124 for (ptr = buf; *uri != '\0' && ptr < (buf + sizeof(buf) - 1); uri ++)
2125 if (*uri <= ' ' || *uri >= 127)
2126 {
2127 if (ptr < (buf + sizeof(buf) - 1))
2128 *ptr ++ = '%';
2129 if (ptr < (buf + sizeof(buf) - 1))
2130 *ptr ++ = hex[(*uri >> 4) & 15];
2131 if (ptr < (buf + sizeof(buf) - 1))
2132 *ptr ++ = hex[*uri & 15];
2133 }
2134 else
2135 *ptr ++ = *uri;
2136
2137 *ptr = '\0';
2138
2139 /*
2140 * See if we had an error the last time around; if so, reconnect...
2141 */
2142
2143 if (http->status == HTTP_ERROR || http->status >= HTTP_BAD_REQUEST)
fa73b229 2144 if (httpReconnect(http))
2145 return (-1);
ef416fc2 2146
2147 /*
2148 * Send the request header...
2149 */
2150
2151 http->state = request;
2152 if (request == HTTP_POST || request == HTTP_PUT)
2153 http->state ++;
2154
2155 http->status = HTTP_CONTINUE;
2156
2157#ifdef HAVE_SSL
2158 if (http->encryption == HTTP_ENCRYPT_REQUIRED && !http->tls)
2159 {
2160 httpSetField(http, HTTP_FIELD_CONNECTION, "Upgrade");
2161 httpSetField(http, HTTP_FIELD_UPGRADE, "TLS/1.0,SSL/2.0,SSL/3.0");
2162 }
2163#endif /* HAVE_SSL */
2164
2165 if (httpPrintf(http, "%s %s HTTP/1.1\r\n", codes[request], buf) < 1)
2166 {
2167 http->status = HTTP_ERROR;
2168 return (-1);
2169 }
2170
2171 for (i = 0; i < HTTP_FIELD_MAX; i ++)
2172 if (http->fields[i][0] != '\0')
2173 {
2174 DEBUG_printf(("%s: %s\n", http_fields[i], http->fields[i]));
2175
2176 if (httpPrintf(http, "%s: %s\r\n", http_fields[i], http->fields[i]) < 1)
2177 {
2178 http->status = HTTP_ERROR;
2179 return (-1);
2180 }
2181 }
2182
2183 if (http->cookie)
2184 if (httpPrintf(http, "Cookie: $Version=0; %s\r\n", http->cookie) < 1)
2185 {
2186 http->status = HTTP_ERROR;
2187 return (-1);
2188 }
2189
b423cd4c 2190 if (http->expect == HTTP_CONTINUE &&
2191 (http->state == HTTP_POST_RECV || http->state == HTTP_PUT_RECV))
2192 if (httpPrintf(http, "Expect: 100-continue\r\n") < 1)
2193 {
2194 http->status = HTTP_ERROR;
2195 return (-1);
2196 }
2197
ef416fc2 2198 if (httpPrintf(http, "\r\n") < 1)
2199 {
2200 http->status = HTTP_ERROR;
2201 return (-1);
2202 }
2203
2204 httpGetLength2(http);
2205 httpClearFields(http);
2206
2207 return (0);
2208}
2209
2210
2211#ifdef HAVE_SSL
2212/*
2213 * 'http_setup_ssl()' - Set up SSL/TLS support on a connection.
2214 */
2215
2216static int /* O - Status of connection */
ecdc0628 2217http_setup_ssl(http_t *http) /* I - HTTP connection */
ef416fc2 2218{
2219# ifdef HAVE_LIBSSL
2220 SSL_CTX *context; /* Context for encryption */
2221 SSL *conn; /* Connection for encryption */
2222# elif defined(HAVE_GNUTLS)
2223 http_tls_t *conn; /* TLS session object */
2224 gnutls_certificate_client_credentials *credentials;
2225 /* TLS credentials */
2226# elif defined(HAVE_CDSASSL)
2227 SSLContextRef conn; /* Context for encryption */
2228 OSStatus error; /* Error info */
2229# endif /* HAVE_LIBSSL */
2230
2231
2232 DEBUG_printf(("http_setup_ssl(http=%p)\n", http));
2233
2234# ifdef HAVE_LIBSSL
2235 context = SSL_CTX_new(SSLv23_client_method());
2236
2237 SSL_CTX_set_options(context, SSL_OP_NO_SSLv2); /* Only use SSLv3 or TLS */
2238
2239 conn = SSL_new(context);
2240
2241 SSL_set_fd(conn, http->fd);
2242 if (SSL_connect(conn) != 1)
2243 {
2244# ifdef DEBUG
2245 unsigned long error; /* Error code */
2246
2247 while ((error = ERR_get_error()) != 0)
2248 printf("http_setup_ssl: %s\n", ERR_error_string(error, NULL));
2249# endif /* DEBUG */
2250
2251 SSL_CTX_free(context);
2252 SSL_free(conn);
2253
2254# ifdef WIN32
2255 http->error = WSAGetLastError();
2256# else
2257 http->error = errno;
2258# endif /* WIN32 */
2259 http->status = HTTP_ERROR;
2260
2261 return (HTTP_ERROR);
2262 }
2263
2264# elif defined(HAVE_GNUTLS)
2265 conn = (http_tls_t *)malloc(sizeof(http_tls_t));
2266
2267 if (conn == NULL)
2268 {
2269 http->error = errno;
2270 http->status = HTTP_ERROR;
2271
2272 return (-1);
2273 }
2274
2275 credentials = (gnutls_certificate_client_credentials *)
2276 malloc(sizeof(gnutls_certificate_client_credentials));
2277 if (credentials == NULL)
2278 {
2279 free(conn);
2280
2281 http->error = errno;
2282 http->status = HTTP_ERROR;
2283
2284 return (-1);
2285 }
2286
2287 gnutls_certificate_allocate_credentials(credentials);
2288
2289 gnutls_init(&(conn->session), GNUTLS_CLIENT);
2290 gnutls_set_default_priority(conn->session);
2291 gnutls_credentials_set(conn->session, GNUTLS_CRD_CERTIFICATE, *credentials);
e1d6a774 2292 gnutls_transport_set_ptr(conn->session,
2293 (gnutls_transport_ptr)((long)http->fd));
ef416fc2 2294
2295 if ((gnutls_handshake(conn->session)) != GNUTLS_E_SUCCESS)
2296 {
2297 http->error = errno;
2298 http->status = HTTP_ERROR;
2299
2300 return (-1);
2301 }
2302
2303 conn->credentials = credentials;
2304
2305# elif defined(HAVE_CDSASSL)
e53920b9 2306 cdsa_conn_ref_t u; /* Connection reference union */
2307
2308
ef416fc2 2309 error = SSLNewContext(false, &conn);
2310
2311 if (!error)
2312 error = SSLSetIOFuncs(conn, _httpReadCDSA, _httpWriteCDSA);
2313
2314 if (!error)
e53920b9 2315 {
2316 /*
2317 * Use a union to resolve warnings about int/pointer size mismatches...
2318 */
2319
2320 u.connection = NULL;
2321 u.sock = http->fd;
2322 error = SSLSetConnection(conn, u.connection);
2323 }
ef416fc2 2324
2325 if (!error)
2326 error = SSLSetAllowsExpiredCerts(conn, true);
2327
2328 if (!error)
2329 error = SSLSetAllowsAnyRoot(conn, true);
2330
2331 if (!error)
b423cd4c 2332 {
2333 while ((error = SSLHandshake(conn)) == errSSLWouldBlock)
2334 usleep(1000);
2335 }
ef416fc2 2336
2337 if (error != 0)
2338 {
2339 http->error = error;
2340 http->status = HTTP_ERROR;
2341
2342 SSLDisposeContext(conn);
2343
2344 close(http->fd);
2345
2346 return (-1);
2347 }
2348# endif /* HAVE_CDSASSL */
2349
2350 http->tls = conn;
2351 return (0);
2352}
2353#endif /* HAVE_SSL */
2354
2355
2356#ifdef HAVE_SSL
2357/*
2358 * 'http_shutdown_ssl()' - Shut down SSL/TLS on a connection.
2359 */
2360
2361static void
ecdc0628 2362http_shutdown_ssl(http_t *http) /* I - HTTP connection */
ef416fc2 2363{
2364# ifdef HAVE_LIBSSL
2365 SSL_CTX *context; /* Context for encryption */
2366 SSL *conn; /* Connection for encryption */
2367
2368
2369 conn = (SSL *)(http->tls);
2370 context = SSL_get_SSL_CTX(conn);
2371
2372 SSL_shutdown(conn);
2373 SSL_CTX_free(context);
2374 SSL_free(conn);
2375
2376# elif defined(HAVE_GNUTLS)
2377 http_tls_t *conn; /* Encryption session */
2378 gnutls_certificate_client_credentials *credentials;
2379 /* TLS credentials */
2380
2381
2382 conn = (http_tls_t *)(http->tls);
2383 credentials = (gnutls_certificate_client_credentials *)(conn->credentials);
2384
2385 gnutls_bye(conn->session, GNUTLS_SHUT_RDWR);
2386 gnutls_deinit(conn->session);
2387 gnutls_certificate_free_credentials(*credentials);
2388 free(credentials);
2389 free(conn);
2390
2391# elif defined(HAVE_CDSASSL)
b423cd4c 2392 while (SSLClose((SSLContextRef)http->tls) == errSSLWouldBlock)
2393 usleep(1000);
2394
ef416fc2 2395 SSLDisposeContext((SSLContextRef)http->tls);
2396# endif /* HAVE_LIBSSL */
2397
2398 http->tls = NULL;
2399}
2400#endif /* HAVE_SSL */
2401
2402
2403#ifdef HAVE_SSL
2404/*
2405 * 'http_upgrade()' - Force upgrade to TLS encryption.
2406 */
2407
2408static int /* O - Status of connection */
ecdc0628 2409http_upgrade(http_t *http) /* I - HTTP connection */
ef416fc2 2410{
2411 int ret; /* Return value */
2412 http_t myhttp; /* Local copy of HTTP data */
2413
2414
2415 DEBUG_printf(("http_upgrade(%p)\n", http));
2416
2417 /*
2418 * Copy the HTTP data to a local variable so we can do the OPTIONS
2419 * request without interfering with the existing request data...
2420 */
2421
2422 memcpy(&myhttp, http, sizeof(myhttp));
2423
2424 /*
2425 * Send an OPTIONS request to the server, requiring SSL or TLS
2426 * encryption on the link...
2427 */
2428
2429 httpClearFields(&myhttp);
2430 httpSetField(&myhttp, HTTP_FIELD_CONNECTION, "upgrade");
2431 httpSetField(&myhttp, HTTP_FIELD_UPGRADE, "TLS/1.0, SSL/2.0, SSL/3.0");
2432
2433 if ((ret = httpOptions(&myhttp, "*")) == 0)
2434 {
2435 /*
2436 * Wait for the secure connection...
2437 */
2438
2439 while (httpUpdate(&myhttp) == HTTP_CONTINUE);
2440 }
2441
2442 httpFlush(&myhttp);
2443
2444 /*
2445 * Copy the HTTP data back over, if any...
2446 */
2447
2448 http->fd = myhttp.fd;
2449 http->error = myhttp.error;
2450 http->activity = myhttp.activity;
2451 http->status = myhttp.status;
2452 http->version = myhttp.version;
2453 http->keep_alive = myhttp.keep_alive;
2454 http->used = myhttp.used;
2455
2456 if (http->used)
2457 memcpy(http->buffer, myhttp.buffer, http->used);
2458
2459 http->auth_type = myhttp.auth_type;
2460 http->nonce_count = myhttp.nonce_count;
2461
2462 memcpy(http->nonce, myhttp.nonce, sizeof(http->nonce));
2463
2464 http->tls = myhttp.tls;
2465 http->encryption = myhttp.encryption;
2466
2467 /*
2468 * See if we actually went secure...
2469 */
2470
2471 if (!http->tls)
2472 {
2473 /*
2474 * Server does not support HTTP upgrade...
2475 */
2476
2477 DEBUG_puts("Server does not support HTTP upgrade!");
2478
2479# ifdef WIN32
2480 closesocket(http->fd);
2481# else
2482 close(http->fd);
2483# endif
2484
2485 http->fd = -1;
2486
2487 return (-1);
2488 }
2489 else
2490 return (ret);
2491}
2492#endif /* HAVE_SSL */
2493
2494
2495/*
2496 * 'http_wait()' - Wait for data available on a connection.
2497 */
2498
2499static int /* O - 1 if data is available, 0 otherwise */
ecdc0628 2500http_wait(http_t *http, /* I - HTTP connection */
ef416fc2 2501 int msec) /* I - Milliseconds to wait */
2502{
2503#ifndef WIN32
2504 struct rlimit limit; /* Runtime limit */
2505 int set_size; /* Size of select set */
2506#endif /* !WIN32 */
2507 struct timeval timeout; /* Timeout */
2508 int nfds; /* Result from select() */
2509
2510
2511 DEBUG_printf(("http_wait(http=%p, msec=%d)\n", http, msec));
2512
fa73b229 2513 if (http->fd < 0)
2514 return (0);
2515
ef416fc2 2516 /*
2517 * Check the SSL/TLS buffers for data first...
2518 */
2519
2520#ifdef HAVE_SSL
2521 if (http->tls)
2522 {
2523# ifdef HAVE_LIBSSL
2524 if (SSL_pending((SSL *)(http->tls)))
2525 return (1);
2526# elif defined(HAVE_GNUTLS)
2527 if (gnutls_record_check_pending(((http_tls_t *)(http->tls))->session))
2528 return (1);
2529# elif defined(HAVE_CDSASSL)
2530 size_t bytes; /* Bytes that are available */
2531
2532 if (!SSLGetBufferedReadSize((SSLContextRef)http->tls, &bytes) && bytes > 0)
2533 return (1);
2534# endif /* HAVE_LIBSSL */
2535 }
2536#endif /* HAVE_SSL */
2537
2538 /*
2539 * Then try doing a select() to poll the socket...
2540 */
2541
2542 if (!http->input_set)
2543 {
2544#ifdef WIN32
2545 /*
2546 * Windows has a fixed-size select() structure, different (surprise,
2547 * surprise!) from all UNIX implementations. Just allocate this
2548 * fixed structure...
2549 */
2550
2551 http->input_set = calloc(1, sizeof(fd_set));
2552#else
2553 /*
2554 * Allocate the select() input set based upon the max number of file
2555 * descriptors available for this process...
2556 */
2557
2558 getrlimit(RLIMIT_NOFILE, &limit);
2559
2560 set_size = (limit.rlim_cur + 31) / 8 + 4;
2561 if (set_size < sizeof(fd_set))
2562 set_size = sizeof(fd_set);
2563
2564 http->input_set = calloc(1, set_size);
2565#endif /* WIN32 */
2566
2567 if (!http->input_set)
2568 return (0);
2569 }
2570
2571 do
2572 {
2573 FD_SET(http->fd, http->input_set);
2574
2575 if (msec >= 0)
2576 {
2577 timeout.tv_sec = msec / 1000;
2578 timeout.tv_usec = (msec % 1000) * 1000;
2579
2580 nfds = select(http->fd + 1, http->input_set, NULL, NULL, &timeout);
2581 }
2582 else
2583 nfds = select(http->fd + 1, http->input_set, NULL, NULL, NULL);
2584 }
2585#ifdef WIN32
2586 while (nfds < 0 && WSAGetLastError() == WSAEINTR);
2587#else
2588 while (nfds < 0 && errno == EINTR);
2589#endif /* WIN32 */
2590
2591 FD_CLR(http->fd, http->input_set);
2592
2593 return (nfds > 0);
2594}
2595
2596
2597/*
2598 * 'http_write()' - Write a buffer to a HTTP connection.
2599 */
2600
2601static int /* O - Number of bytes written */
ecdc0628 2602http_write(http_t *http, /* I - HTTP connection */
ef416fc2 2603 const char *buffer, /* I - Buffer for data */
2604 int length) /* I - Number of bytes to write */
2605{
2606 int tbytes, /* Total bytes sent */
2607 bytes; /* Bytes sent */
2608
2609
2610 tbytes = 0;
2611
2612 while (length > 0)
2613 {
2614#ifdef HAVE_SSL
2615 if (http->tls)
2616 bytes = http_write_ssl(http, buffer, length);
2617 else
2618#endif /* HAVE_SSL */
2619 bytes = send(http->fd, buffer, length, 0);
2620
2621 if (bytes < 0)
2622 {
2623#ifdef WIN32
2624 if (WSAGetLastError() != http->error)
2625 {
2626 http->error = WSAGetLastError();
2627 continue;
2628 }
2629#else
2630 if (errno == EINTR)
2631 continue;
2632 else if (errno != http->error && errno != ECONNRESET)
2633 {
2634 http->error = errno;
2635 continue;
2636 }
2637#endif /* WIN32 */
2638
2639 DEBUG_puts("http_write: error writing data...\n");
2640
2641 return (-1);
2642 }
2643
2644 buffer += bytes;
2645 tbytes += bytes;
2646 length -= bytes;
2647 }
2648
2649#ifdef DEBUG
2650 {
2651 int i, j, ch;
2652 printf("http_write: wrote %d bytes: \n", tbytes);
2653 for (i = 0, buffer -= tbytes; i < tbytes; i += 16)
2654 {
2655 printf(" ");
2656
2657 for (j = 0; j < 16 && (i + j) < tbytes; j ++)
2658 printf(" %02X", buffer[i + j] & 255);
2659
2660 while (j < 16)
2661 {
2662 printf(" ");
2663 j ++;
2664 }
2665
2666 printf(" ");
2667 for (j = 0; j < 16 && (i + j) < tbytes; j ++)
2668 {
2669 ch = buffer[i + j] & 255;
2670
2671 if (ch < ' ' || ch == 127)
2672 ch = '.';
2673
2674 putchar(ch);
2675 }
2676 putchar('\n');
2677 }
2678 }
2679#endif /* DEBUG */
2680
2681 return (tbytes);
2682}
2683
2684
2685/*
2686 * 'http_write_chunk()' - Write a chunked buffer.
2687 */
2688
2689static int /* O - Number bytes written */
ecdc0628 2690http_write_chunk(http_t *http, /* I - HTTP connection */
ef416fc2 2691 const char *buffer, /* I - Buffer to write */
2692 int length) /* I - Length of buffer */
2693{
2694 char header[255]; /* Chunk header */
2695 int bytes; /* Bytes written */
2696
2697 DEBUG_printf(("http_write_chunk(http=%p, buffer=%p, length=%d)\n",
2698 http, buffer, length));
2699
2700 /*
2701 * Write the chunk header, data, and trailer.
2702 */
2703
2704 sprintf(header, "%x\r\n", length);
2705 if (http_write(http, header, strlen(header)) < 0)
2706 {
2707 DEBUG_puts(" http_write of length failed!");
2708 return (-1);
2709 }
2710
2711 if ((bytes = http_write(http, buffer, length)) < 0)
2712 {
2713 DEBUG_puts(" http_write of buffer failed!");
2714 return (-1);
2715 }
2716
2717 if (http_write(http, "\r\n", 2) < 0)
2718 {
2719 DEBUG_puts(" http_write of CR LF failed!");
2720 return (-1);
2721 }
2722
2723 return (bytes);
2724}
2725
2726
2727#ifdef HAVE_SSL
2728/*
2729 * 'http_write_ssl()' - Write to a SSL/TLS connection.
2730 */
2731
2732static int /* O - Bytes written */
ecdc0628 2733http_write_ssl(http_t *http, /* I - HTTP connection */
ef416fc2 2734 const char *buf, /* I - Buffer holding data */
2735 int len) /* I - Length of buffer */
2736{
2737# if defined(HAVE_LIBSSL)
2738 return (SSL_write((SSL *)(http->tls), buf, len));
2739
2740# elif defined(HAVE_GNUTLS)
2741 return (gnutls_record_send(((http_tls_t *)(http->tls))->session, buf, len));
2742# elif defined(HAVE_CDSASSL)
fa73b229 2743 int result; /* Return value */
ef416fc2 2744 OSStatus error; /* Error info */
2745 size_t processed; /* Number of bytes processed */
2746
2747
2748 error = SSLWrite((SSLContextRef)http->tls, buf, len, &processed);
2749
fa73b229 2750 switch (error)
ef416fc2 2751 {
fa73b229 2752 case 0 :
2753 result = (int)processed;
2754 break;
2755 case errSSLClosedGraceful :
2756 result = 0;
2757 break;
2758 case errSSLWouldBlock :
b423cd4c 2759 if (processed)
2760 result = (int)processed;
2761 else
2762 {
2763 result = -1;
2764 errno = EINTR;
2765 }
fa73b229 2766 break;
2767 default :
2768 errno = EPIPE;
2769 result = -1;
2770 break;
ef416fc2 2771 }
fa73b229 2772
2773 return (result);
ef416fc2 2774# endif /* HAVE_LIBSSL */
2775}
2776#endif /* HAVE_SSL */
2777
2778
2779/*
e53920b9 2780 * End of "$Id: http.c 5373 2006-04-06 20:03:32Z mike $".
ef416fc2 2781 */