1 /*-
2 * SPDX-License-Identifier: BSD-3-Clause
3 *
4 * Copyright (c) 2000-2014 Dag-Erling Smørgrav
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer
12 * in this position and unchanged.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
16 * 3. The name of the author may not be used to endorse or promote products
17 * derived from this software without specific prior written permission.
18 *
19 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
20 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
21 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
22 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
23 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
24 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
25 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
26 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
27 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
28 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29 */
30
31 #include <sys/cdefs.h>
32 /*
33 * The following copyright applies to the base64 code:
34 *
35 *-
36 * Copyright 1997 Massachusetts Institute of Technology
37 *
38 * Permission to use, copy, modify, and distribute this software and
39 * its documentation for any purpose and without fee is hereby
40 * granted, provided that both the above copyright notice and this
41 * permission notice appear in all copies, that both the above
42 * copyright notice and this permission notice appear in all
43 * supporting documentation, and that the name of M.I.T. not be used
44 * in advertising or publicity pertaining to distribution of the
45 * software without specific, written prior permission. M.I.T. makes
46 * no representations about the suitability of this software for any
47 * purpose. It is provided "as is" without express or implied
48 * warranty.
49 *
50 * THIS SOFTWARE IS PROVIDED BY M.I.T. ``AS IS''. M.I.T. DISCLAIMS
51 * ALL EXPRESS OR IMPLIED WARRANTIES WITH REGARD TO THIS SOFTWARE,
52 * INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
53 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. IN NO EVENT
54 * SHALL M.I.T. BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
55 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
56 * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
57 * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
58 * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
59 * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
60 * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
61 * SUCH DAMAGE.
62 */
63
64 #include <sys/param.h>
65 #include <sys/socket.h>
66 #include <sys/time.h>
67
68 #include <ctype.h>
69 #include <err.h>
70 #include <errno.h>
71 #include <locale.h>
72 #include <netdb.h>
73 #include <stdarg.h>
74 #include <stdbool.h>
75 #include <stdio.h>
76 #include <stdlib.h>
77 #include <string.h>
78 #include <time.h>
79 #include <unistd.h>
80
81 #ifdef WITH_SSL
82 #include <openssl/md5.h>
83 #define MD5Init(c) MD5_Init(c)
84 #define MD5Update(c, data, len) MD5_Update(c, data, len)
85 #define MD5Final(md, c) MD5_Final(md, c)
86 #else
87 #include <md5.h>
88 #endif
89
90 #include <netinet/in.h>
91 #include <netinet/tcp.h>
92
93 #include "fetch.h"
94 #include "common.h"
95 #include "httperr.h"
96
97 /* Maximum number of redirects to follow */
98 #define MAX_REDIRECT 20
99
100 /* Symbolic names for reply codes we care about */
101 #define HTTP_OK 200
102 #define HTTP_PARTIAL 206
103 #define HTTP_MOVED_PERM 301
104 #define HTTP_MOVED_TEMP 302
105 #define HTTP_SEE_OTHER 303
106 #define HTTP_NOT_MODIFIED 304
107 #define HTTP_USE_PROXY 305
108 #define HTTP_TEMP_REDIRECT 307
109 #define HTTP_PERM_REDIRECT 308
110 #define HTTP_NEED_AUTH 401
111 #define HTTP_NEED_PROXY_AUTH 407
112 #define HTTP_BAD_RANGE 416
113 #define HTTP_PROTOCOL_ERROR 999
114
115 #define HTTP_REDIRECT(xyz) ((xyz) == HTTP_MOVED_PERM \
116 || (xyz) == HTTP_MOVED_TEMP \
117 || (xyz) == HTTP_TEMP_REDIRECT \
118 || (xyz) == HTTP_PERM_REDIRECT \
119 || (xyz) == HTTP_USE_PROXY \
120 || (xyz) == HTTP_SEE_OTHER)
121
122 #define HTTP_ERROR(xyz) ((xyz) >= 400 && (xyz) <= 599)
123
124
125 /*****************************************************************************
126 * I/O functions for decoding chunked streams
127 */
128
129 struct httpio {
130 conn_t *conn; /* connection */
131 int chunked; /* chunked mode */
132 char *buf; /* chunk buffer */
133 size_t bufsize; /* size of chunk buffer */
134 size_t buflen; /* amount of data currently in buffer */
135 size_t bufpos; /* current read offset in buffer */
136 int eof; /* end-of-file flag */
137 int error; /* error flag */
138 size_t chunksize; /* remaining size of current chunk */
139 #ifndef NDEBUG
140 size_t total;
141 #endif
142 };
143
144 /*
145 * Get next chunk header
146 */
147 static int
http_new_chunk(struct httpio * io)148 http_new_chunk(struct httpio *io)
149 {
150 char *p;
151
152 if (fetch_getln(io->conn) == -1)
153 return (-1);
154
155 for (p = io->conn->line;
156 *p != '\0' && !isspace((unsigned char)*p) && *p != ';';
157 p++) {
158 io->chunksize <<= 4;
159 if (*p >= '0' && *p <= '9')
160 io->chunksize += *p - '0';
161 else if (*p >= 'A' && *p <= 'F')
162 io->chunksize += 10 + *p - 'A';
163 else if (*p >= 'a' && *p <= 'f')
164 io->chunksize += 10 + *p - 'a';
165 else
166 return (-1);
167 }
168
169 #ifndef NDEBUG
170 if (fetchDebug) {
171 io->total += io->chunksize;
172 if (io->chunksize == 0)
173 fprintf(stderr, "%s(): end of last chunk\n", __func__);
174 else
175 fprintf(stderr, "%s(): new chunk: %lu (%lu)\n",
176 __func__, (unsigned long)io->chunksize,
177 (unsigned long)io->total);
178 }
179 #endif
180
181 return (io->chunksize);
182 }
183
184 /*
185 * Grow the input buffer to at least len bytes
186 */
187 static inline int
http_growbuf(struct httpio * io,size_t len)188 http_growbuf(struct httpio *io, size_t len)
189 {
190 char *tmp;
191
192 if (io->bufsize >= len)
193 return (0);
194
195 if ((tmp = realloc(io->buf, len)) == NULL)
196 return (-1);
197 io->buf = tmp;
198 io->bufsize = len;
199 return (0);
200 }
201
202 /*
203 * Fill the input buffer, do chunk decoding on the fly
204 */
205 static ssize_t
http_fillbuf(struct httpio * io,size_t len)206 http_fillbuf(struct httpio *io, size_t len)
207 {
208 ssize_t nbytes;
209 char ch;
210
211 if (io->error)
212 return (-1);
213 if (io->eof)
214 return (0);
215
216 /* not chunked: just fetch the requested amount */
217 if (io->chunked == 0) {
218 if (http_growbuf(io, len) == -1)
219 return (-1);
220 if ((nbytes = fetch_bufread(io->conn, io->buf, len)) == -1) {
221 io->error = errno;
222 return (-1);
223 }
224 io->buflen = nbytes;
225 io->bufpos = 0;
226 return (io->buflen);
227 }
228
229 /* chunked, but we ran out: get the next chunk header */
230 if (io->chunksize == 0) {
231 switch (http_new_chunk(io)) {
232 case -1:
233 io->error = EPROTO;
234 return (-1);
235 case 0:
236 io->eof = 1;
237 return (0);
238 }
239 }
240
241 /* fetch the requested amount, but no more than the current chunk */
242 if (len > io->chunksize)
243 len = io->chunksize;
244 if (http_growbuf(io, len) == -1)
245 return (-1);
246 if ((nbytes = fetch_bufread(io->conn, io->buf, len)) == -1) {
247 io->error = errno;
248 return (-1);
249 }
250 io->bufpos = 0;
251 io->buflen = nbytes;
252 io->chunksize -= nbytes;
253
254 if (io->chunksize == 0) {
255 if (fetch_bufread(io->conn, &ch, 1) != 1 || ch != '\r' ||
256 fetch_bufread(io->conn, &ch, 1) != 1 || ch != '\n')
257 return (-1);
258 }
259
260 return (io->buflen);
261 }
262
263 /*
264 * Read function
265 */
266 static int
http_readfn(void * v,char * buf,int len)267 http_readfn(void *v, char *buf, int len)
268 {
269 struct httpio *io = (struct httpio *)v;
270 int rlen;
271
272 if (io->error)
273 return (-1);
274 if (io->eof)
275 return (0);
276
277 /* empty buffer */
278 if (!io->buf || io->bufpos == io->buflen) {
279 if ((rlen = http_fillbuf(io, len)) < 0) {
280 if ((errno = io->error) == EINTR)
281 io->error = 0;
282 return (-1);
283 } else if (rlen == 0) {
284 return (0);
285 }
286 }
287
288 rlen = io->buflen - io->bufpos;
289 if (len < rlen)
290 rlen = len;
291 memcpy(buf, io->buf + io->bufpos, rlen);
292 io->bufpos += rlen;
293 return (rlen);
294 }
295
296 /*
297 * Write function
298 */
299 static int
http_writefn(void * v,const char * buf,int len)300 http_writefn(void *v, const char *buf, int len)
301 {
302 struct httpio *io = (struct httpio *)v;
303
304 return (fetch_write(io->conn, buf, len));
305 }
306
307 /*
308 * Close function
309 */
310 static int
http_closefn(void * v)311 http_closefn(void *v)
312 {
313 struct httpio *io = (struct httpio *)v;
314 int r;
315
316 r = fetch_close(io->conn);
317 if (io->buf)
318 free(io->buf);
319 free(io);
320 return (r);
321 }
322
323 /*
324 * Wrap a file descriptor up
325 */
326 static FILE *
http_funopen(conn_t * conn,int chunked)327 http_funopen(conn_t *conn, int chunked)
328 {
329 struct httpio *io;
330 FILE *f;
331
332 if ((io = calloc(1, sizeof(*io))) == NULL) {
333 fetch_syserr();
334 return (NULL);
335 }
336 io->conn = conn;
337 io->chunked = chunked;
338 f = funopen(io, http_readfn, http_writefn, NULL, http_closefn);
339 if (f == NULL) {
340 fetch_syserr();
341 free(io);
342 return (NULL);
343 }
344 return (f);
345 }
346
347
348 /*****************************************************************************
349 * Helper functions for talking to the server and parsing its replies
350 */
351
352 /* Header types */
353 typedef enum {
354 hdr_syserror = -2,
355 hdr_error = -1,
356 hdr_end = 0,
357 hdr_unknown = 1,
358 hdr_content_length,
359 hdr_content_range,
360 hdr_last_modified,
361 hdr_location,
362 hdr_transfer_encoding,
363 hdr_www_authenticate,
364 hdr_proxy_authenticate,
365 } hdr_t;
366
367 /* Names of interesting headers */
368 static struct {
369 hdr_t num;
370 const char *name;
371 } hdr_names[] = {
372 { hdr_content_length, "Content-Length" },
373 { hdr_content_range, "Content-Range" },
374 { hdr_last_modified, "Last-Modified" },
375 { hdr_location, "Location" },
376 { hdr_transfer_encoding, "Transfer-Encoding" },
377 { hdr_www_authenticate, "WWW-Authenticate" },
378 { hdr_proxy_authenticate, "Proxy-Authenticate" },
379 { hdr_unknown, NULL },
380 };
381
382 /*
383 * Send a formatted line; optionally echo to terminal
384 */
385 static int
http_cmd(conn_t * conn,const char * fmt,...)386 http_cmd(conn_t *conn, const char *fmt, ...)
387 {
388 va_list ap;
389 size_t len;
390 char *msg;
391 int r;
392
393 va_start(ap, fmt);
394 len = vasprintf(&msg, fmt, ap);
395 va_end(ap);
396
397 if (msg == NULL) {
398 errno = ENOMEM;
399 fetch_syserr();
400 return (-1);
401 }
402
403 r = fetch_putln(conn, msg, len);
404 free(msg);
405
406 if (r == -1) {
407 fetch_syserr();
408 return (-1);
409 }
410
411 return (0);
412 }
413
414 /*
415 * Get and parse status line
416 */
417 static int
http_get_reply(conn_t * conn)418 http_get_reply(conn_t *conn)
419 {
420 char *p;
421
422 if (fetch_getln(conn) == -1)
423 return (-1);
424 /*
425 * A valid status line looks like "HTTP/m.n xyz reason" where m
426 * and n are the major and minor protocol version numbers and xyz
427 * is the reply code.
428 * Unfortunately, there are servers out there (NCSA 1.5.1, to name
429 * just one) that do not send a version number, so we can't rely
430 * on finding one, but if we do, insist on it being 1.0 or 1.1.
431 * We don't care about the reason phrase.
432 */
433 if (conn->linelen < 4 || strncmp(conn->line, "HTTP", 4) != 0)
434 return (HTTP_PROTOCOL_ERROR);
435 p = conn->line + 4;
436 if (*p == '/') {
437 if (p[1] != '1' || p[2] != '.' || (p[3] != '0' && p[3] != '1'))
438 return (HTTP_PROTOCOL_ERROR);
439 p += 4;
440 }
441 if (*p != ' ' ||
442 !isdigit((unsigned char)p[1]) ||
443 !isdigit((unsigned char)p[2]) ||
444 !isdigit((unsigned char)p[3]))
445 return (HTTP_PROTOCOL_ERROR);
446
447 conn->err = (p[1] - '0') * 100 + (p[2] - '0') * 10 + (p[3] - '0');
448 return (conn->err);
449 }
450
451 /*
452 * Check a header; if the type matches the given string, return a pointer
453 * to the beginning of the value.
454 */
455 static const char *
http_match(const char * str,const char * hdr)456 http_match(const char *str, const char *hdr)
457 {
458 while (*str && *hdr &&
459 tolower((unsigned char)*str++) == tolower((unsigned char)*hdr++))
460 /* nothing */;
461 if (*str || *hdr != ':')
462 return (NULL);
463 while (*hdr && isspace((unsigned char)*++hdr))
464 /* nothing */;
465 return (hdr);
466 }
467
468
469 /*
470 * Get the next header and return the appropriate symbolic code. We
471 * need to read one line ahead for checking for a continuation line
472 * belonging to the current header (continuation lines start with
473 * white space).
474 *
475 * We get called with a fresh line already in the conn buffer, either
476 * from the previous http_next_header() invocation, or, the first
477 * time, from a fetch_getln() performed by our caller.
478 *
479 * This stops when we encounter an empty line (we dont read beyond the header
480 * area).
481 *
482 * Note that the "headerbuf" is just a place to return the result. Its
483 * contents are not used for the next call. This means that no cleanup
484 * is needed when ie doing another connection, just call the cleanup when
485 * fully done to deallocate memory.
486 */
487
488 /* Limit the max number of continuation lines to some reasonable value */
489 #define HTTP_MAX_CONT_LINES 10
490
491 /* Place into which to build a header from one or several lines */
492 typedef struct {
493 char *buf; /* buffer */
494 size_t bufsize; /* buffer size */
495 size_t buflen; /* length of buffer contents */
496 } http_headerbuf_t;
497
498 static void
init_http_headerbuf(http_headerbuf_t * buf)499 init_http_headerbuf(http_headerbuf_t *buf)
500 {
501 buf->buf = NULL;
502 buf->bufsize = 0;
503 buf->buflen = 0;
504 }
505
506 static void
clean_http_headerbuf(http_headerbuf_t * buf)507 clean_http_headerbuf(http_headerbuf_t *buf)
508 {
509 if (buf->buf)
510 free(buf->buf);
511 init_http_headerbuf(buf);
512 }
513
514 static hdr_t
http_next_header(conn_t * conn,http_headerbuf_t * hbuf,const char ** p)515 http_next_header(conn_t *conn, http_headerbuf_t *hbuf, const char **p)
516 {
517 unsigned int i, len;
518
519 if (conn->linelen == 0)
520 return (hdr_end);
521
522 /* Copy the line to the headerbuf */
523 if (hbuf->bufsize <= conn->linelen) {
524 if ((hbuf->buf = realloc(hbuf->buf, conn->linelen + 1)) == NULL)
525 return (hdr_syserror);
526 hbuf->bufsize = conn->linelen + 1;
527 }
528 memcpy(hbuf->buf, conn->line, conn->linelen + 1);
529 hbuf->buflen = conn->linelen;
530
531 /*
532 * Fetch possible continuation lines. Stop at 1st non-continuation
533 * and leave it in the conn buffer
534 */
535 for (i = 0; i < HTTP_MAX_CONT_LINES; i++) {
536 if (fetch_getln(conn) == -1)
537 return (hdr_syserror);
538
539 /*
540 * Note: we previously considered a pure whitespace line
541 * equivalent to an empty one. This was incorrect.
542 */
543 if (conn->line[0] != ' ' && conn->line[0] != '\t')
544 break;
545
546 /* Got a continuation line. Concatenate to previous */
547 len = hbuf->buflen + conn->linelen;
548 if (hbuf->bufsize <= len) {
549 len *= 2;
550 if ((hbuf->buf = realloc(hbuf->buf, len + 1)) == NULL)
551 return (hdr_syserror);
552 hbuf->bufsize = len + 1;
553 }
554 memcpy(hbuf->buf + hbuf->buflen, conn->line, conn->linelen + 1);
555 hbuf->buflen += conn->linelen;
556 }
557
558 /*
559 * We could check for malformed headers but we don't really care.
560 * A valid header starts with a token immediately followed by a
561 * colon; a token is any sequence of non-control, non-whitespace
562 * characters except "()<>@,;:\\\"{}".
563 */
564 for (i = 0; hdr_names[i].num != hdr_unknown; i++)
565 if ((*p = http_match(hdr_names[i].name, hbuf->buf)) != NULL)
566 return (hdr_names[i].num);
567
568 return (hdr_unknown);
569 }
570
571 /**************************
572 * [Proxy-]Authenticate header parsing
573 */
574
575 /*
576 * Read doublequote-delimited string into output buffer obuf (allocated
577 * by caller, whose responsibility it is to ensure that it's big enough)
578 * cp points to the first char after the initial '"'
579 * Handles \ quoting
580 * Returns pointer to the first char after the terminating double quote, or
581 * NULL for error.
582 */
583 static const char *
http_parse_headerstring(const char * cp,char * obuf)584 http_parse_headerstring(const char *cp, char *obuf)
585 {
586 for (;;) {
587 switch (*cp) {
588 case 0: /* Unterminated string */
589 *obuf = 0;
590 return (NULL);
591 case '"': /* Ending quote */
592 *obuf = 0;
593 return (++cp);
594 case '\\':
595 if (*++cp == 0) {
596 *obuf = 0;
597 return (NULL);
598 }
599 /* FALLTHROUGH */
600 default:
601 *obuf++ = *cp++;
602 }
603 }
604 }
605
606 /* Http auth challenge schemes */
607 typedef enum {HTTPAS_UNKNOWN, HTTPAS_BASIC,HTTPAS_DIGEST} http_auth_schemes_t;
608
609 /* Data holder for a Basic or Digest challenge. */
610 typedef struct {
611 http_auth_schemes_t scheme;
612 char *realm;
613 char *qop;
614 char *nonce;
615 char *opaque;
616 char *algo;
617 int stale;
618 int nc; /* Nonce count */
619 } http_auth_challenge_t;
620
621 static void
init_http_auth_challenge(http_auth_challenge_t * b)622 init_http_auth_challenge(http_auth_challenge_t *b)
623 {
624 b->scheme = HTTPAS_UNKNOWN;
625 b->realm = b->qop = b->nonce = b->opaque = b->algo = NULL;
626 b->stale = b->nc = 0;
627 }
628
629 static void
clean_http_auth_challenge(http_auth_challenge_t * b)630 clean_http_auth_challenge(http_auth_challenge_t *b)
631 {
632 if (b->realm)
633 free(b->realm);
634 if (b->qop)
635 free(b->qop);
636 if (b->nonce)
637 free(b->nonce);
638 if (b->opaque)
639 free(b->opaque);
640 if (b->algo)
641 free(b->algo);
642 init_http_auth_challenge(b);
643 }
644
645 /* Data holder for an array of challenges offered in an http response. */
646 #define MAX_CHALLENGES 10
647 typedef struct {
648 http_auth_challenge_t *challenges[MAX_CHALLENGES];
649 int count; /* Number of parsed challenges in the array */
650 int valid; /* We did parse an authenticate header */
651 } http_auth_challenges_t;
652
653 static void
init_http_auth_challenges(http_auth_challenges_t * cs)654 init_http_auth_challenges(http_auth_challenges_t *cs)
655 {
656 int i;
657 for (i = 0; i < MAX_CHALLENGES; i++)
658 cs->challenges[i] = NULL;
659 cs->count = cs->valid = 0;
660 }
661
662 static void
clean_http_auth_challenges(http_auth_challenges_t * cs)663 clean_http_auth_challenges(http_auth_challenges_t *cs)
664 {
665 int i;
666 /* We rely on non-zero pointers being allocated, not on the count */
667 for (i = 0; i < MAX_CHALLENGES; i++) {
668 if (cs->challenges[i] != NULL) {
669 clean_http_auth_challenge(cs->challenges[i]);
670 free(cs->challenges[i]);
671 }
672 }
673 init_http_auth_challenges(cs);
674 }
675
676 /*
677 * Enumeration for lexical elements. Separators will be returned as their own
678 * ascii value
679 */
680 typedef enum {HTTPHL_WORD=256, HTTPHL_STRING=257, HTTPHL_END=258,
681 HTTPHL_ERROR = 259} http_header_lex_t;
682
683 /*
684 * Determine what kind of token comes next and return possible value
685 * in buf, which is supposed to have been allocated big enough by
686 * caller. Advance input pointer and return element type.
687 */
688 static int
http_header_lex(const char ** cpp,char * buf)689 http_header_lex(const char **cpp, char *buf)
690 {
691 size_t l;
692 /* Eat initial whitespace */
693 *cpp += strspn(*cpp, " \t");
694 if (**cpp == 0)
695 return (HTTPHL_END);
696
697 /* Separator ? */
698 if (**cpp == ',' || **cpp == '=')
699 return (*((*cpp)++));
700
701 /* String ? */
702 if (**cpp == '"') {
703 *cpp = http_parse_headerstring(++*cpp, buf);
704 if (*cpp == NULL)
705 return (HTTPHL_ERROR);
706 return (HTTPHL_STRING);
707 }
708
709 /* Read other token, until separator or whitespace */
710 l = strcspn(*cpp, " \t,=");
711 memcpy(buf, *cpp, l);
712 buf[l] = 0;
713 *cpp += l;
714 return (HTTPHL_WORD);
715 }
716
717 /*
718 * Read challenges from http xxx-authenticate header and accumulate them
719 * in the challenges list structure.
720 *
721 * Headers with multiple challenges are specified by rfc2617, but
722 * servers (ie: squid) often send them in separate headers instead,
723 * which in turn is forbidden by the http spec (multiple headers with
724 * the same name are only allowed for pure comma-separated lists, see
725 * rfc2616 sec 4.2).
726 *
727 * We support both approaches anyway
728 */
729 static int
http_parse_authenticate(const char * cp,http_auth_challenges_t * cs)730 http_parse_authenticate(const char *cp, http_auth_challenges_t *cs)
731 {
732 int ret = -1;
733 http_header_lex_t lex;
734 char *key = malloc(strlen(cp) + 1);
735 char *value = malloc(strlen(cp) + 1);
736 char *buf = malloc(strlen(cp) + 1);
737
738 if (key == NULL || value == NULL || buf == NULL) {
739 fetch_syserr();
740 goto out;
741 }
742
743 /* In any case we've seen the header and we set the valid bit */
744 cs->valid = 1;
745
746 /* Need word first */
747 lex = http_header_lex(&cp, key);
748 if (lex != HTTPHL_WORD)
749 goto out;
750
751 /* Loop on challenges */
752 for (; cs->count < MAX_CHALLENGES; cs->count++) {
753 cs->challenges[cs->count] =
754 malloc(sizeof(http_auth_challenge_t));
755 if (cs->challenges[cs->count] == NULL) {
756 fetch_syserr();
757 goto out;
758 }
759 init_http_auth_challenge(cs->challenges[cs->count]);
760 if (strcasecmp(key, "basic") == 0) {
761 cs->challenges[cs->count]->scheme = HTTPAS_BASIC;
762 } else if (strcasecmp(key, "digest") == 0) {
763 cs->challenges[cs->count]->scheme = HTTPAS_DIGEST;
764 } else {
765 cs->challenges[cs->count]->scheme = HTTPAS_UNKNOWN;
766 /*
767 * Continue parsing as basic or digest may
768 * follow, and the syntax is the same for
769 * all. We'll just ignore this one when
770 * looking at the list
771 */
772 }
773
774 /* Loop on attributes */
775 for (;;) {
776 /* Key */
777 lex = http_header_lex(&cp, key);
778 if (lex != HTTPHL_WORD)
779 goto out;
780
781 /* Equal sign */
782 lex = http_header_lex(&cp, buf);
783 if (lex != '=')
784 goto out;
785
786 /* Value */
787 lex = http_header_lex(&cp, value);
788 if (lex != HTTPHL_WORD && lex != HTTPHL_STRING)
789 goto out;
790
791 if (strcasecmp(key, "realm") == 0) {
792 cs->challenges[cs->count]->realm =
793 strdup(value);
794 } else if (strcasecmp(key, "qop") == 0) {
795 cs->challenges[cs->count]->qop =
796 strdup(value);
797 } else if (strcasecmp(key, "nonce") == 0) {
798 cs->challenges[cs->count]->nonce =
799 strdup(value);
800 } else if (strcasecmp(key, "opaque") == 0) {
801 cs->challenges[cs->count]->opaque =
802 strdup(value);
803 } else if (strcasecmp(key, "algorithm") == 0) {
804 cs->challenges[cs->count]->algo =
805 strdup(value);
806 } else if (strcasecmp(key, "stale") == 0) {
807 cs->challenges[cs->count]->stale =
808 strcasecmp(value, "no");
809 } else {
810 /* ignore unknown attributes */
811 }
812
813 /* Comma or Next challenge or End */
814 lex = http_header_lex(&cp, key);
815 /*
816 * If we get a word here, this is the beginning of the
817 * next challenge. Break the attributes loop
818 */
819 if (lex == HTTPHL_WORD)
820 break;
821
822 if (lex == HTTPHL_END) {
823 /* End while looking for ',' is normal exit */
824 cs->count++;
825 ret = 0;
826 goto out;
827 }
828 /* Anything else is an error */
829 if (lex != ',')
830 goto out;
831
832 } /* End attributes loop */
833 } /* End challenge loop */
834
835 /*
836 * Challenges max count exceeded. This really can't happen
837 * with normal data, something's fishy -> error
838 */
839
840 out:
841 if (key)
842 free(key);
843 if (value)
844 free(value);
845 if (buf)
846 free(buf);
847 return (ret);
848 }
849
850
851 /*
852 * Parse a last-modified header
853 */
854 static int
http_parse_mtime(const char * p,time_t * mtime)855 http_parse_mtime(const char *p, time_t *mtime)
856 {
857 char locale[64], *r;
858 struct tm tm;
859
860 strlcpy(locale, setlocale(LC_TIME, NULL), sizeof(locale));
861 setlocale(LC_TIME, "C");
862 r = strptime(p, "%a, %d %b %Y %H:%M:%S GMT", &tm);
863 /*
864 * Some proxies use UTC in response, but it should still be
865 * parsed. RFC2616 states GMT and UTC are exactly equal for HTTP.
866 */
867 if (r == NULL)
868 r = strptime(p, "%a, %d %b %Y %H:%M:%S UTC", &tm);
869 /* XXX should add support for date-2 and date-3 */
870 setlocale(LC_TIME, locale);
871 if (r == NULL)
872 return (-1);
873 DEBUGF("last modified: [%04d-%02d-%02d %02d:%02d:%02d]\n",
874 tm.tm_year + 1900, tm.tm_mon + 1, tm.tm_mday,
875 tm.tm_hour, tm.tm_min, tm.tm_sec);
876 *mtime = timegm(&tm);
877 return (0);
878 }
879
880 /*
881 * Parse a content-length header
882 */
883 static int
http_parse_length(const char * p,off_t * length)884 http_parse_length(const char *p, off_t *length)
885 {
886 off_t len;
887
888 for (len = 0; *p && isdigit((unsigned char)*p); ++p)
889 len = len * 10 + (*p - '0');
890 if (*p)
891 return (-1);
892 DEBUGF("content length: [%lld]\n", (long long)len);
893 *length = len;
894 return (0);
895 }
896
897 /*
898 * Parse a content-range header
899 */
900 static int
http_parse_range(const char * p,off_t * offset,off_t * length,off_t * size)901 http_parse_range(const char *p, off_t *offset, off_t *length, off_t *size)
902 {
903 off_t first, last, len;
904
905 if (strncasecmp(p, "bytes ", 6) != 0)
906 return (-1);
907 p += 6;
908 if (*p == '*') {
909 first = last = -1;
910 ++p;
911 } else {
912 for (first = 0; *p && isdigit((unsigned char)*p); ++p)
913 first = first * 10 + *p - '0';
914 if (*p != '-')
915 return (-1);
916 for (last = 0, ++p; *p && isdigit((unsigned char)*p); ++p)
917 last = last * 10 + *p - '0';
918 }
919 if (first > last || *p != '/')
920 return (-1);
921 for (len = 0, ++p; *p && isdigit((unsigned char)*p); ++p)
922 len = len * 10 + *p - '0';
923 if (*p || len < last - first + 1)
924 return (-1);
925 if (first == -1) {
926 DEBUGF("content range: [*/%lld]\n", (long long)len);
927 *length = 0;
928 } else {
929 DEBUGF("content range: [%lld-%lld/%lld]\n",
930 (long long)first, (long long)last, (long long)len);
931 *length = last - first + 1;
932 }
933 *offset = first;
934 *size = len;
935 return (0);
936 }
937
938
939 /*****************************************************************************
940 * Helper functions for authorization
941 */
942
943 /*
944 * Base64 encoding
945 */
946 static char *
http_base64(const char * src)947 http_base64(const char *src)
948 {
949 static const char base64[] =
950 "ABCDEFGHIJKLMNOPQRSTUVWXYZ"
951 "abcdefghijklmnopqrstuvwxyz"
952 "0123456789+/";
953 char *str, *dst;
954 size_t l;
955 int t;
956
957 l = strlen(src);
958 if ((str = malloc(((l + 2) / 3) * 4 + 1)) == NULL)
959 return (NULL);
960 dst = str;
961
962 while (l >= 3) {
963 t = (src[0] << 16) | (src[1] << 8) | src[2];
964 dst[0] = base64[(t >> 18) & 0x3f];
965 dst[1] = base64[(t >> 12) & 0x3f];
966 dst[2] = base64[(t >> 6) & 0x3f];
967 dst[3] = base64[(t >> 0) & 0x3f];
968 src += 3; l -= 3;
969 dst += 4;
970 }
971
972 switch (l) {
973 case 2:
974 t = (src[0] << 16) | (src[1] << 8);
975 dst[0] = base64[(t >> 18) & 0x3f];
976 dst[1] = base64[(t >> 12) & 0x3f];
977 dst[2] = base64[(t >> 6) & 0x3f];
978 dst[3] = '=';
979 dst += 4;
980 break;
981 case 1:
982 t = src[0] << 16;
983 dst[0] = base64[(t >> 18) & 0x3f];
984 dst[1] = base64[(t >> 12) & 0x3f];
985 dst[2] = dst[3] = '=';
986 dst += 4;
987 break;
988 case 0:
989 break;
990 }
991
992 *dst = 0;
993 return (str);
994 }
995
996
997 /*
998 * Extract authorization parameters from environment value.
999 * The value is like scheme:realm:user:pass
1000 */
1001 typedef struct {
1002 char *scheme;
1003 char *realm;
1004 char *user;
1005 char *password;
1006 } http_auth_params_t;
1007
1008 static void
init_http_auth_params(http_auth_params_t * s)1009 init_http_auth_params(http_auth_params_t *s)
1010 {
1011 s->scheme = s->realm = s->user = s->password = NULL;
1012 }
1013
1014 static void
clean_http_auth_params(http_auth_params_t * s)1015 clean_http_auth_params(http_auth_params_t *s)
1016 {
1017 if (s->scheme)
1018 free(s->scheme);
1019 if (s->realm)
1020 free(s->realm);
1021 if (s->user)
1022 free(s->user);
1023 if (s->password)
1024 free(s->password);
1025 init_http_auth_params(s);
1026 }
1027
1028 static int
http_authfromenv(const char * p,http_auth_params_t * parms)1029 http_authfromenv(const char *p, http_auth_params_t *parms)
1030 {
1031 int ret = -1;
1032 char *v, *ve;
1033 char *str = strdup(p);
1034
1035 if (str == NULL) {
1036 fetch_syserr();
1037 return (-1);
1038 }
1039 v = str;
1040
1041 if ((ve = strchr(v, ':')) == NULL)
1042 goto out;
1043
1044 *ve = 0;
1045 if ((parms->scheme = strdup(v)) == NULL) {
1046 fetch_syserr();
1047 goto out;
1048 }
1049 v = ve + 1;
1050
1051 if ((ve = strchr(v, ':')) == NULL)
1052 goto out;
1053
1054 *ve = 0;
1055 if ((parms->realm = strdup(v)) == NULL) {
1056 fetch_syserr();
1057 goto out;
1058 }
1059 v = ve + 1;
1060
1061 if ((ve = strchr(v, ':')) == NULL)
1062 goto out;
1063
1064 *ve = 0;
1065 if ((parms->user = strdup(v)) == NULL) {
1066 fetch_syserr();
1067 goto out;
1068 }
1069 v = ve + 1;
1070
1071
1072 if ((parms->password = strdup(v)) == NULL) {
1073 fetch_syserr();
1074 goto out;
1075 }
1076 ret = 0;
1077 out:
1078 if (ret == -1)
1079 clean_http_auth_params(parms);
1080 if (str)
1081 free(str);
1082 return (ret);
1083 }
1084
1085
1086 /*
1087 * Digest response: the code to compute the digest is taken from the
1088 * sample implementation in RFC2616
1089 */
1090 #define IN const
1091 #define OUT
1092
1093 #define HASHLEN 16
1094 typedef char HASH[HASHLEN];
1095 #define HASHHEXLEN 32
1096 typedef char HASHHEX[HASHHEXLEN+1];
1097
1098 static const char *hexchars = "0123456789abcdef";
1099 static void
CvtHex(IN HASH Bin,OUT HASHHEX Hex)1100 CvtHex(IN HASH Bin, OUT HASHHEX Hex)
1101 {
1102 unsigned short i;
1103 unsigned char j;
1104
1105 for (i = 0; i < HASHLEN; i++) {
1106 j = (Bin[i] >> 4) & 0xf;
1107 Hex[i*2] = hexchars[j];
1108 j = Bin[i] & 0xf;
1109 Hex[i*2+1] = hexchars[j];
1110 }
1111 Hex[HASHHEXLEN] = '\0';
1112 };
1113
1114 /* calculate H(A1) as per spec */
1115 static void
DigestCalcHA1(IN char * pszAlg,IN char * pszUserName,IN char * pszRealm,IN char * pszPassword,IN char * pszNonce,IN char * pszCNonce,OUT HASHHEX SessionKey)1116 DigestCalcHA1(
1117 IN char * pszAlg,
1118 IN char * pszUserName,
1119 IN char * pszRealm,
1120 IN char * pszPassword,
1121 IN char * pszNonce,
1122 IN char * pszCNonce,
1123 OUT HASHHEX SessionKey
1124 )
1125 {
1126 MD5_CTX Md5Ctx;
1127 HASH HA1;
1128
1129 MD5Init(&Md5Ctx);
1130 MD5Update(&Md5Ctx, pszUserName, strlen(pszUserName));
1131 MD5Update(&Md5Ctx, ":", 1);
1132 MD5Update(&Md5Ctx, pszRealm, strlen(pszRealm));
1133 MD5Update(&Md5Ctx, ":", 1);
1134 MD5Update(&Md5Ctx, pszPassword, strlen(pszPassword));
1135 MD5Final(HA1, &Md5Ctx);
1136 if (strcasecmp(pszAlg, "md5-sess") == 0) {
1137
1138 MD5Init(&Md5Ctx);
1139 MD5Update(&Md5Ctx, HA1, HASHLEN);
1140 MD5Update(&Md5Ctx, ":", 1);
1141 MD5Update(&Md5Ctx, pszNonce, strlen(pszNonce));
1142 MD5Update(&Md5Ctx, ":", 1);
1143 MD5Update(&Md5Ctx, pszCNonce, strlen(pszCNonce));
1144 MD5Final(HA1, &Md5Ctx);
1145 }
1146 CvtHex(HA1, SessionKey);
1147 }
1148
1149 /* calculate request-digest/response-digest as per HTTP Digest spec */
1150 static void
DigestCalcResponse(IN HASHHEX HA1,IN char * pszNonce,IN char * pszNonceCount,IN char * pszCNonce,IN char * pszQop,IN char * pszMethod,IN char * pszDigestUri,IN HASHHEX HEntity,OUT HASHHEX Response)1151 DigestCalcResponse(
1152 IN HASHHEX HA1, /* H(A1) */
1153 IN char * pszNonce, /* nonce from server */
1154 IN char * pszNonceCount, /* 8 hex digits */
1155 IN char * pszCNonce, /* client nonce */
1156 IN char * pszQop, /* qop-value: "", "auth", "auth-int" */
1157 IN char * pszMethod, /* method from the request */
1158 IN char * pszDigestUri, /* requested URL */
1159 IN HASHHEX HEntity, /* H(entity body) if qop="auth-int" */
1160 OUT HASHHEX Response /* request-digest or response-digest */
1161 )
1162 {
1163 #if 0
1164 DEBUGF("Calc: HA1[%s] Nonce[%s] qop[%s] method[%s] URI[%s]\n",
1165 HA1, pszNonce, pszQop, pszMethod, pszDigestUri);
1166 #endif
1167 MD5_CTX Md5Ctx;
1168 HASH HA2;
1169 HASH RespHash;
1170 HASHHEX HA2Hex;
1171
1172 // calculate H(A2)
1173 MD5Init(&Md5Ctx);
1174 MD5Update(&Md5Ctx, pszMethod, strlen(pszMethod));
1175 MD5Update(&Md5Ctx, ":", 1);
1176 MD5Update(&Md5Ctx, pszDigestUri, strlen(pszDigestUri));
1177 if (strcasecmp(pszQop, "auth-int") == 0) {
1178 MD5Update(&Md5Ctx, ":", 1);
1179 MD5Update(&Md5Ctx, HEntity, HASHHEXLEN);
1180 }
1181 MD5Final(HA2, &Md5Ctx);
1182 CvtHex(HA2, HA2Hex);
1183
1184 // calculate response
1185 MD5Init(&Md5Ctx);
1186 MD5Update(&Md5Ctx, HA1, HASHHEXLEN);
1187 MD5Update(&Md5Ctx, ":", 1);
1188 MD5Update(&Md5Ctx, pszNonce, strlen(pszNonce));
1189 MD5Update(&Md5Ctx, ":", 1);
1190 if (*pszQop) {
1191 MD5Update(&Md5Ctx, pszNonceCount, strlen(pszNonceCount));
1192 MD5Update(&Md5Ctx, ":", 1);
1193 MD5Update(&Md5Ctx, pszCNonce, strlen(pszCNonce));
1194 MD5Update(&Md5Ctx, ":", 1);
1195 MD5Update(&Md5Ctx, pszQop, strlen(pszQop));
1196 MD5Update(&Md5Ctx, ":", 1);
1197 }
1198 MD5Update(&Md5Ctx, HA2Hex, HASHHEXLEN);
1199 MD5Final(RespHash, &Md5Ctx);
1200 CvtHex(RespHash, Response);
1201 }
1202
1203 /*
1204 * Generate/Send a Digest authorization header
1205 * This looks like: [Proxy-]Authorization: credentials
1206 *
1207 * credentials = "Digest" digest-response
1208 * digest-response = 1#( username | realm | nonce | digest-uri
1209 * | response | [ algorithm ] | [cnonce] |
1210 * [opaque] | [message-qop] |
1211 * [nonce-count] | [auth-param] )
1212 * username = "username" "=" username-value
1213 * username-value = quoted-string
1214 * digest-uri = "uri" "=" digest-uri-value
1215 * digest-uri-value = request-uri ; As specified by HTTP/1.1
1216 * message-qop = "qop" "=" qop-value
1217 * cnonce = "cnonce" "=" cnonce-value
1218 * cnonce-value = nonce-value
1219 * nonce-count = "nc" "=" nc-value
1220 * nc-value = 8LHEX
1221 * response = "response" "=" request-digest
1222 * request-digest = <"> 32LHEX <">
1223 */
1224 static int
http_digest_auth(conn_t * conn,const char * hdr,http_auth_challenge_t * c,http_auth_params_t * parms,struct url * url)1225 http_digest_auth(conn_t *conn, const char *hdr, http_auth_challenge_t *c,
1226 http_auth_params_t *parms, struct url *url)
1227 {
1228 int r;
1229 char noncecount[10];
1230 char cnonce[40];
1231 char *options = NULL;
1232
1233 if (!c->realm || !c->nonce) {
1234 DEBUGF("realm/nonce not set in challenge\n");
1235 return(-1);
1236 }
1237 if (!c->algo)
1238 c->algo = strdup("");
1239
1240 if (asprintf(&options, "%s%s%s%s",
1241 *c->algo? ",algorithm=" : "", c->algo,
1242 c->opaque? ",opaque=" : "", c->opaque?c->opaque:"") < 0)
1243 return (-1);
1244
1245 if (!c->qop) {
1246 c->qop = strdup("");
1247 *noncecount = 0;
1248 *cnonce = 0;
1249 } else {
1250 c->nc++;
1251 sprintf(noncecount, "%08x", c->nc);
1252 /* We don't try very hard with the cnonce ... */
1253 sprintf(cnonce, "%x%lx", getpid(), (unsigned long)time(0));
1254 }
1255
1256 HASHHEX HA1;
1257 DigestCalcHA1(c->algo, parms->user, c->realm,
1258 parms->password, c->nonce, cnonce, HA1);
1259 DEBUGF("HA1: [%s]\n", HA1);
1260 HASHHEX digest, null;
1261 memset(null, 0, sizeof(null));
1262 DigestCalcResponse(HA1, c->nonce, noncecount, cnonce, c->qop,
1263 "GET", url->doc, null, digest);
1264
1265 if (c->qop[0]) {
1266 r = http_cmd(conn, "%s: Digest username=\"%s\",realm=\"%s\","
1267 "nonce=\"%s\",uri=\"%s\",response=\"%s\","
1268 "qop=\"auth\", cnonce=\"%s\", nc=%s%s",
1269 hdr, parms->user, c->realm,
1270 c->nonce, url->doc, digest,
1271 cnonce, noncecount, options);
1272 } else {
1273 r = http_cmd(conn, "%s: Digest username=\"%s\",realm=\"%s\","
1274 "nonce=\"%s\",uri=\"%s\",response=\"%s\"%s",
1275 hdr, parms->user, c->realm,
1276 c->nonce, url->doc, digest, options);
1277 }
1278 if (options)
1279 free(options);
1280 return (r);
1281 }
1282
1283 /*
1284 * Encode username and password
1285 */
1286 static int
http_basic_auth(conn_t * conn,const char * hdr,const char * usr,const char * pwd)1287 http_basic_auth(conn_t *conn, const char *hdr, const char *usr, const char *pwd)
1288 {
1289 char *upw, *auth;
1290 int r;
1291
1292 DEBUGF("basic: usr: [%s]\n", usr);
1293 DEBUGF("basic: pwd: [%s]\n", pwd);
1294 if (asprintf(&upw, "%s:%s", usr, pwd) == -1)
1295 return (-1);
1296 auth = http_base64(upw);
1297 free(upw);
1298 if (auth == NULL)
1299 return (-1);
1300 r = http_cmd(conn, "%s: Basic %s", hdr, auth);
1301 free(auth);
1302 return (r);
1303 }
1304
1305 /*
1306 * Chose the challenge to answer and call the appropriate routine to
1307 * produce the header.
1308 */
1309 static int
http_authorize(conn_t * conn,const char * hdr,http_auth_challenges_t * cs,http_auth_params_t * parms,struct url * url)1310 http_authorize(conn_t *conn, const char *hdr, http_auth_challenges_t *cs,
1311 http_auth_params_t *parms, struct url *url)
1312 {
1313 http_auth_challenge_t *digest = NULL;
1314 int i;
1315
1316 /* If user or pass are null we're not happy */
1317 if (!parms->user || !parms->password) {
1318 DEBUGF("NULL usr or pass\n");
1319 return (-1);
1320 }
1321
1322 /* Look for a Digest */
1323 for (i = 0; i < cs->count; i++) {
1324 if (cs->challenges[i]->scheme == HTTPAS_DIGEST)
1325 digest = cs->challenges[i];
1326 }
1327
1328 /* Error if "Digest" was specified and there is no Digest challenge */
1329 if (!digest &&
1330 (parms->scheme && strcasecmp(parms->scheme, "digest") == 0)) {
1331 DEBUGF("Digest auth in env, not supported by peer\n");
1332 return (-1);
1333 }
1334 /*
1335 * If "basic" was specified in the environment, or there is no Digest
1336 * challenge, do the basic thing. Don't need a challenge for this,
1337 * so no need to check basic!=NULL
1338 */
1339 if (!digest ||
1340 (parms->scheme && strcasecmp(parms->scheme, "basic") == 0))
1341 return (http_basic_auth(conn,hdr,parms->user,parms->password));
1342
1343 /* Else, prefer digest. We just checked that it's not NULL */
1344 return (http_digest_auth(conn, hdr, digest, parms, url));
1345 }
1346
1347 /*****************************************************************************
1348 * Helper functions for connecting to a server or proxy
1349 */
1350
1351 /*
1352 * Connect to the correct HTTP server or proxy.
1353 */
1354 static conn_t *
http_connect(struct url * URL,struct url * purl,const char * flags)1355 http_connect(struct url *URL, struct url *purl, const char *flags)
1356 {
1357 struct url *curl;
1358 conn_t *conn;
1359 hdr_t h;
1360 http_headerbuf_t headerbuf;
1361 const char *p;
1362 int verbose;
1363 int af, val;
1364 int serrno;
1365 bool isproxyauth = false;
1366 http_auth_challenges_t proxy_challenges;
1367
1368 #ifdef INET6
1369 af = AF_UNSPEC;
1370 #else
1371 af = AF_INET;
1372 #endif
1373
1374 verbose = CHECK_FLAG('v');
1375 if (CHECK_FLAG('4'))
1376 af = AF_INET;
1377 #ifdef INET6
1378 else if (CHECK_FLAG('6'))
1379 af = AF_INET6;
1380 #endif
1381
1382 curl = (purl != NULL) ? purl : URL;
1383
1384 retry:
1385 if ((conn = fetch_connect(curl->host, curl->port, af, verbose)) == NULL)
1386 /* fetch_connect() has already set an error code */
1387 return (NULL);
1388 init_http_headerbuf(&headerbuf);
1389 if (strcmp(URL->scheme, SCHEME_HTTPS) == 0 && purl) {
1390 init_http_auth_challenges(&proxy_challenges);
1391 http_cmd(conn, "CONNECT %s:%d HTTP/1.1", URL->host, URL->port);
1392 http_cmd(conn, "Host: %s:%d", URL->host, URL->port);
1393 if (isproxyauth) {
1394 http_auth_params_t aparams;
1395 init_http_auth_params(&aparams);
1396 if (*purl->user || *purl->pwd) {
1397 aparams.user = strdup(purl->user);
1398 aparams.password = strdup(purl->pwd);
1399 } else if ((p = getenv("HTTP_PROXY_AUTH")) != NULL &&
1400 *p != '\0') {
1401 if (http_authfromenv(p, &aparams) < 0) {
1402 http_seterr(HTTP_NEED_PROXY_AUTH);
1403 fetch_syserr();
1404 goto ouch;
1405 }
1406 } else if (fetch_netrc_auth(purl) == 0) {
1407 aparams.user = strdup(purl->user);
1408 aparams.password = strdup(purl->pwd);
1409 } else {
1410 /*
1411 * No auth information found in system - exiting
1412 * with warning.
1413 */
1414 warnx("Missing username and/or password set");
1415 fetch_syserr();
1416 goto ouch;
1417 }
1418 http_authorize(conn, "Proxy-Authorization",
1419 &proxy_challenges, &aparams, purl);
1420 clean_http_auth_params(&aparams);
1421 }
1422 http_cmd(conn, "");
1423 /* Get reply from CONNECT Tunnel attempt */
1424 int httpreply = http_get_reply(conn);
1425 if (httpreply != HTTP_OK) {
1426 http_seterr(httpreply);
1427 /* If the error is a 407/HTTP_NEED_PROXY_AUTH */
1428 if (httpreply == HTTP_NEED_PROXY_AUTH &&
1429 ! isproxyauth) {
1430 /* Try again with authentication. */
1431 clean_http_headerbuf(&headerbuf);
1432 fetch_close(conn);
1433 isproxyauth = true;
1434 goto retry;
1435 }
1436 goto ouch;
1437 }
1438 /* Read and discard the rest of the proxy response */
1439 if (fetch_getln(conn) < 0) {
1440 fetch_syserr();
1441 goto ouch;
1442 }
1443 do {
1444 switch ((h = http_next_header(conn, &headerbuf, &p))) {
1445 case hdr_syserror:
1446 fetch_syserr();
1447 goto ouch;
1448 case hdr_error:
1449 http_seterr(HTTP_PROTOCOL_ERROR);
1450 goto ouch;
1451 default:
1452 /* ignore */ ;
1453 }
1454 } while (h > hdr_end);
1455 }
1456 if (strcmp(URL->scheme, SCHEME_HTTPS) == 0 &&
1457 fetch_ssl(conn, URL, verbose) == -1) {
1458 /* grrr */
1459 errno = EAUTH;
1460 fetch_syserr();
1461 goto ouch;
1462 }
1463
1464 val = 1;
1465 setsockopt(conn->sd, IPPROTO_TCP, TCP_NOPUSH, &val, sizeof(val));
1466
1467 clean_http_headerbuf(&headerbuf);
1468 return (conn);
1469 ouch:
1470 serrno = errno;
1471 clean_http_headerbuf(&headerbuf);
1472 fetch_close(conn);
1473 errno = serrno;
1474 return (NULL);
1475 }
1476
1477 static struct url *
http_get_proxy(struct url * url,const char * flags)1478 http_get_proxy(struct url * url, const char *flags)
1479 {
1480 struct url *purl;
1481 char *p;
1482
1483 if (flags != NULL && strchr(flags, 'd') != NULL)
1484 return (NULL);
1485 if (fetch_no_proxy_match(url->host))
1486 return (NULL);
1487 if (((p = getenv("HTTP_PROXY")) || (p = getenv("http_proxy"))) &&
1488 *p && (purl = fetchParseURL(p))) {
1489 if (!*purl->scheme)
1490 strcpy(purl->scheme, SCHEME_HTTP);
1491 if (!purl->port)
1492 purl->port = fetch_default_proxy_port(purl->scheme);
1493 if (strcmp(purl->scheme, SCHEME_HTTP) == 0)
1494 return (purl);
1495 fetchFreeURL(purl);
1496 }
1497 return (NULL);
1498 }
1499
1500 static void
http_print_html(FILE * out,FILE * in)1501 http_print_html(FILE *out, FILE *in)
1502 {
1503 ssize_t len = 0;
1504 size_t cap;
1505 char *line = NULL, *p, *q;
1506 int comment, tag;
1507
1508 comment = tag = 0;
1509 while ((len = getline(&line, &cap, in)) >= 0) {
1510 while (len && isspace((unsigned char)line[len - 1]))
1511 --len;
1512 for (p = q = line; q < line + len; ++q) {
1513 if (comment && *q == '-') {
1514 if (q + 2 < line + len &&
1515 strcmp(q, "-->") == 0) {
1516 tag = comment = 0;
1517 q += 2;
1518 }
1519 } else if (tag && !comment && *q == '>') {
1520 p = q + 1;
1521 tag = 0;
1522 } else if (!tag && *q == '<') {
1523 if (q > p)
1524 fwrite(p, q - p, 1, out);
1525 tag = 1;
1526 if (q + 3 < line + len &&
1527 strcmp(q, "<!--") == 0) {
1528 comment = 1;
1529 q += 3;
1530 }
1531 }
1532 }
1533 if (!tag && q > p)
1534 fwrite(p, q - p, 1, out);
1535 fputc('\n', out);
1536 }
1537
1538 free(line);
1539 }
1540
1541
1542 /*****************************************************************************
1543 * Core
1544 */
1545
1546 FILE *
http_request(struct url * URL,const char * op,struct url_stat * us,struct url * purl,const char * flags)1547 http_request(struct url *URL, const char *op, struct url_stat *us,
1548 struct url *purl, const char *flags)
1549 {
1550
1551 return (http_request_body(URL, op, us, purl, flags, NULL, NULL));
1552 }
1553
1554 /*
1555 * Send a request and process the reply
1556 *
1557 * XXX This function is way too long, the do..while loop should be split
1558 * XXX off into a separate function.
1559 */
1560 FILE *
http_request_body(struct url * URL,const char * op,struct url_stat * us,struct url * purl,const char * flags,const char * content_type,const char * body)1561 http_request_body(struct url *URL, const char *op, struct url_stat *us,
1562 struct url *purl, const char *flags, const char *content_type,
1563 const char *body)
1564 {
1565 char timebuf[80];
1566 char hbuf[MAXHOSTNAMELEN + 7], *host;
1567 conn_t *conn;
1568 struct url *url, *new;
1569 int chunked, direct, ims, noredirect, verbose;
1570 int e, i, n, val;
1571 off_t offset, clength, length, size;
1572 time_t mtime;
1573 const char *p;
1574 FILE *f;
1575 hdr_t h;
1576 struct tm *timestruct;
1577 http_headerbuf_t headerbuf;
1578 http_auth_challenges_t server_challenges;
1579 http_auth_challenges_t proxy_challenges;
1580 size_t body_len;
1581
1582 /* The following calls don't allocate anything */
1583 init_http_headerbuf(&headerbuf);
1584 init_http_auth_challenges(&server_challenges);
1585 init_http_auth_challenges(&proxy_challenges);
1586
1587 direct = CHECK_FLAG('d');
1588 noredirect = CHECK_FLAG('A');
1589 verbose = CHECK_FLAG('v');
1590 ims = CHECK_FLAG('i');
1591
1592 if (direct && purl) {
1593 fetchFreeURL(purl);
1594 purl = NULL;
1595 }
1596
1597 /* try the provided URL first */
1598 url = URL;
1599
1600 n = MAX_REDIRECT;
1601 i = 0;
1602
1603 e = HTTP_PROTOCOL_ERROR;
1604 do {
1605 new = NULL;
1606 chunked = 0;
1607 offset = 0;
1608 clength = -1;
1609 length = -1;
1610 size = -1;
1611 mtime = 0;
1612
1613 /* check port */
1614 if (!url->port)
1615 url->port = fetch_default_port(url->scheme);
1616
1617 /* were we redirected to an FTP URL? */
1618 if (purl == NULL && strcmp(url->scheme, SCHEME_FTP) == 0) {
1619 if (strcmp(op, "GET") == 0)
1620 return (ftp_request(url, "RETR", us, purl, flags));
1621 else if (strcmp(op, "HEAD") == 0)
1622 return (ftp_request(url, "STAT", us, purl, flags));
1623 }
1624
1625 /* connect to server or proxy */
1626 if ((conn = http_connect(url, purl, flags)) == NULL)
1627 goto ouch;
1628
1629 /* append port number only if necessary */
1630 host = url->host;
1631 if (url->port != fetch_default_port(url->scheme)) {
1632 snprintf(hbuf, sizeof(hbuf), "%s:%d", host, url->port);
1633 host = hbuf;
1634 }
1635
1636 /* send request */
1637 if (verbose)
1638 fetch_info("requesting %s://%s%s",
1639 url->scheme, host, url->doc);
1640 if (purl && strcmp(url->scheme, SCHEME_HTTPS) != 0) {
1641 http_cmd(conn, "%s %s://%s%s HTTP/1.1",
1642 op, url->scheme, host, url->doc);
1643 } else {
1644 http_cmd(conn, "%s %s HTTP/1.1",
1645 op, url->doc);
1646 }
1647
1648 if (ims && url->ims_time) {
1649 timestruct = gmtime((time_t *)&url->ims_time);
1650 (void)strftime(timebuf, 80, "%a, %d %b %Y %T GMT",
1651 timestruct);
1652 if (verbose)
1653 fetch_info("If-Modified-Since: %s", timebuf);
1654 http_cmd(conn, "If-Modified-Since: %s", timebuf);
1655 }
1656 /* virtual host */
1657 http_cmd(conn, "Host: %s", host);
1658
1659 /*
1660 * Proxy authorization: we only send auth after we received
1661 * a 407 error. We do not first try basic anyway (changed
1662 * when support was added for digest-auth)
1663 */
1664 if (purl && proxy_challenges.valid) {
1665 http_auth_params_t aparams;
1666 init_http_auth_params(&aparams);
1667 if (*purl->user || *purl->pwd) {
1668 aparams.user = strdup(purl->user);
1669 aparams.password = strdup(purl->pwd);
1670 } else if ((p = getenv("HTTP_PROXY_AUTH")) != NULL &&
1671 *p != '\0') {
1672 if (http_authfromenv(p, &aparams) < 0) {
1673 http_seterr(HTTP_NEED_PROXY_AUTH);
1674 goto ouch;
1675 }
1676 } else if (fetch_netrc_auth(purl) == 0) {
1677 aparams.user = strdup(purl->user);
1678 aparams.password = strdup(purl->pwd);
1679 }
1680 http_authorize(conn, "Proxy-Authorization",
1681 &proxy_challenges, &aparams, url);
1682 clean_http_auth_params(&aparams);
1683 }
1684
1685 /*
1686 * Server authorization: we never send "a priori"
1687 * Basic auth, which used to be done if user/pass were
1688 * set in the url. This would be weird because we'd send the
1689 * password in the clear even if Digest is finally to be
1690 * used (it would have made more sense for the
1691 * pre-digest version to do this when Basic was specified
1692 * in the environment)
1693 */
1694 if (server_challenges.valid) {
1695 http_auth_params_t aparams;
1696 init_http_auth_params(&aparams);
1697 if (*url->user || *url->pwd) {
1698 aparams.user = strdup(url->user);
1699 aparams.password = strdup(url->pwd);
1700 } else if ((p = getenv("HTTP_AUTH")) != NULL &&
1701 *p != '\0') {
1702 if (http_authfromenv(p, &aparams) < 0) {
1703 http_seterr(HTTP_NEED_AUTH);
1704 goto ouch;
1705 }
1706 } else if (fetch_netrc_auth(url) == 0) {
1707 aparams.user = strdup(url->user);
1708 aparams.password = strdup(url->pwd);
1709 } else if (fetchAuthMethod &&
1710 fetchAuthMethod(url) == 0) {
1711 aparams.user = strdup(url->user);
1712 aparams.password = strdup(url->pwd);
1713 } else {
1714 http_seterr(HTTP_NEED_AUTH);
1715 goto ouch;
1716 }
1717 http_authorize(conn, "Authorization",
1718 &server_challenges, &aparams, url);
1719 clean_http_auth_params(&aparams);
1720 }
1721
1722 /* other headers */
1723 if ((p = getenv("HTTP_ACCEPT")) != NULL) {
1724 if (*p != '\0')
1725 http_cmd(conn, "Accept: %s", p);
1726 } else {
1727 http_cmd(conn, "Accept: */*");
1728 }
1729 if ((p = getenv("HTTP_REFERER")) != NULL && *p != '\0') {
1730 if (strcasecmp(p, "auto") == 0)
1731 http_cmd(conn, "Referer: %s://%s%s",
1732 url->scheme, host, url->doc);
1733 else
1734 http_cmd(conn, "Referer: %s", p);
1735 }
1736 if ((p = getenv("HTTP_USER_AGENT")) != NULL) {
1737 /* no User-Agent if defined but empty */
1738 if (*p != '\0')
1739 http_cmd(conn, "User-Agent: %s", p);
1740 } else {
1741 /* default User-Agent */
1742 http_cmd(conn, "User-Agent: %s " _LIBFETCH_VER,
1743 getprogname());
1744 }
1745 if (url->offset > 0)
1746 http_cmd(conn, "Range: bytes=%lld-", (long long)url->offset);
1747 http_cmd(conn, "Connection: close");
1748
1749 if (body) {
1750 body_len = strlen(body);
1751 http_cmd(conn, "Content-Length: %zu", body_len);
1752 if (content_type != NULL)
1753 http_cmd(conn, "Content-Type: %s", content_type);
1754 }
1755
1756 http_cmd(conn, "");
1757
1758 if (body)
1759 fetch_write(conn, body, body_len);
1760
1761 /*
1762 * Force the queued request to be dispatched. Normally, one
1763 * would do this with shutdown(2) but squid proxies can be
1764 * configured to disallow such half-closed connections. To
1765 * be compatible with such configurations, fiddle with socket
1766 * options to force the pending data to be written.
1767 */
1768 val = 0;
1769 setsockopt(conn->sd, IPPROTO_TCP, TCP_NOPUSH, &val,
1770 sizeof(val));
1771 val = 1;
1772 setsockopt(conn->sd, IPPROTO_TCP, TCP_NODELAY, &val,
1773 sizeof(val));
1774
1775 /* get reply */
1776 switch (http_get_reply(conn)) {
1777 case HTTP_OK:
1778 case HTTP_PARTIAL:
1779 case HTTP_NOT_MODIFIED:
1780 /* fine */
1781 break;
1782 case HTTP_MOVED_PERM:
1783 case HTTP_MOVED_TEMP:
1784 case HTTP_TEMP_REDIRECT:
1785 case HTTP_PERM_REDIRECT:
1786 case HTTP_SEE_OTHER:
1787 case HTTP_USE_PROXY:
1788 /*
1789 * Not so fine, but we still have to read the
1790 * headers to get the new location.
1791 */
1792 break;
1793 case HTTP_NEED_AUTH:
1794 if (server_challenges.valid) {
1795 /*
1796 * We already sent out authorization code,
1797 * so there's nothing more we can do.
1798 */
1799 http_seterr(conn->err);
1800 goto ouch;
1801 }
1802 /* try again, but send the password this time */
1803 if (verbose)
1804 fetch_info("server requires authorization");
1805 break;
1806 case HTTP_NEED_PROXY_AUTH:
1807 if (proxy_challenges.valid) {
1808 /*
1809 * We already sent our proxy
1810 * authorization code, so there's
1811 * nothing more we can do. */
1812 http_seterr(conn->err);
1813 goto ouch;
1814 }
1815 /* try again, but send the password this time */
1816 if (verbose)
1817 fetch_info("proxy requires authorization");
1818 break;
1819 case HTTP_BAD_RANGE:
1820 /*
1821 * This can happen if we ask for 0 bytes because
1822 * we already have the whole file. Consider this
1823 * a success for now, and check sizes later.
1824 */
1825 break;
1826 case HTTP_PROTOCOL_ERROR:
1827 /* fall through */
1828 case -1:
1829 fetch_syserr();
1830 goto ouch;
1831 default:
1832 http_seterr(conn->err);
1833 if (!verbose)
1834 goto ouch;
1835 /* fall through so we can get the full error message */
1836 }
1837
1838 /* get headers. http_next_header expects one line readahead */
1839 if (fetch_getln(conn) == -1) {
1840 fetch_syserr();
1841 goto ouch;
1842 }
1843 do {
1844 switch ((h = http_next_header(conn, &headerbuf, &p))) {
1845 case hdr_syserror:
1846 fetch_syserr();
1847 goto ouch;
1848 case hdr_error:
1849 http_seterr(HTTP_PROTOCOL_ERROR);
1850 goto ouch;
1851 case hdr_content_length:
1852 http_parse_length(p, &clength);
1853 break;
1854 case hdr_content_range:
1855 http_parse_range(p, &offset, &length, &size);
1856 break;
1857 case hdr_last_modified:
1858 http_parse_mtime(p, &mtime);
1859 break;
1860 case hdr_location:
1861 if (!HTTP_REDIRECT(conn->err))
1862 break;
1863 /*
1864 * if the A flag is set, we don't follow
1865 * temporary redirects.
1866 */
1867 if (noredirect &&
1868 conn->err != HTTP_MOVED_PERM &&
1869 conn->err != HTTP_PERM_REDIRECT &&
1870 conn->err != HTTP_USE_PROXY) {
1871 n = 1;
1872 break;
1873 }
1874 if (new)
1875 free(new);
1876 if (verbose)
1877 fetch_info("%d redirect to %s",
1878 conn->err, p);
1879 if (*p == '/')
1880 /* absolute path */
1881 new = fetchMakeURL(url->scheme, url->host,
1882 url->port, p, url->user, url->pwd);
1883 else
1884 new = fetchParseURL(p);
1885 if (new == NULL) {
1886 /* XXX should set an error code */
1887 DEBUGF("failed to parse new URL\n");
1888 goto ouch;
1889 }
1890
1891 /* Only copy credentials if the host matches */
1892 if (strcmp(new->host, url->host) == 0 &&
1893 !*new->user && !*new->pwd) {
1894 strcpy(new->user, url->user);
1895 strcpy(new->pwd, url->pwd);
1896 }
1897 new->offset = url->offset;
1898 new->length = url->length;
1899 new->ims_time = url->ims_time;
1900 break;
1901 case hdr_transfer_encoding:
1902 /* XXX weak test*/
1903 chunked = (strcasecmp(p, "chunked") == 0);
1904 break;
1905 case hdr_www_authenticate:
1906 if (conn->err != HTTP_NEED_AUTH)
1907 break;
1908 if (http_parse_authenticate(p, &server_challenges) == 0)
1909 ++n;
1910 break;
1911 case hdr_proxy_authenticate:
1912 if (conn->err != HTTP_NEED_PROXY_AUTH)
1913 break;
1914 if (http_parse_authenticate(p, &proxy_challenges) == 0)
1915 ++n;
1916 break;
1917 case hdr_end:
1918 /* fall through */
1919 case hdr_unknown:
1920 /* ignore */
1921 break;
1922 }
1923 } while (h > hdr_end);
1924
1925 /* we need to provide authentication */
1926 if (conn->err == HTTP_NEED_AUTH ||
1927 conn->err == HTTP_NEED_PROXY_AUTH) {
1928 e = conn->err;
1929 if ((conn->err == HTTP_NEED_AUTH &&
1930 !server_challenges.valid) ||
1931 (conn->err == HTTP_NEED_PROXY_AUTH &&
1932 !proxy_challenges.valid)) {
1933 /* 401/7 but no www/proxy-authenticate ?? */
1934 DEBUGF("%03d without auth header\n", conn->err);
1935 goto ouch;
1936 }
1937 fetch_close(conn);
1938 conn = NULL;
1939 continue;
1940 }
1941
1942 /* requested range not satisfiable */
1943 if (conn->err == HTTP_BAD_RANGE) {
1944 if (url->offset > 0 && url->length == 0) {
1945 /* asked for 0 bytes; fake it */
1946 offset = url->offset;
1947 clength = -1;
1948 conn->err = HTTP_OK;
1949 break;
1950 } else {
1951 http_seterr(conn->err);
1952 goto ouch;
1953 }
1954 }
1955
1956 /* we have a hit or an error */
1957 if (conn->err == HTTP_OK
1958 || conn->err == HTTP_NOT_MODIFIED
1959 || conn->err == HTTP_PARTIAL
1960 || HTTP_ERROR(conn->err))
1961 break;
1962
1963 /* all other cases: we got a redirect */
1964 e = conn->err;
1965 clean_http_auth_challenges(&server_challenges);
1966 fetch_close(conn);
1967 conn = NULL;
1968 if (!new) {
1969 DEBUGF("redirect with no new location\n");
1970 break;
1971 }
1972 if (url != URL)
1973 fetchFreeURL(url);
1974 url = new;
1975 } while (++i < n);
1976
1977 /* we failed, or ran out of retries */
1978 if (conn == NULL) {
1979 http_seterr(e);
1980 goto ouch;
1981 }
1982
1983 DEBUGF("offset %lld, length %lld, size %lld, clength %lld\n",
1984 (long long)offset, (long long)length,
1985 (long long)size, (long long)clength);
1986
1987 if (conn->err == HTTP_NOT_MODIFIED) {
1988 http_seterr(HTTP_NOT_MODIFIED);
1989 return (NULL);
1990 }
1991
1992 /* check for inconsistencies */
1993 if (clength != -1 && length != -1 && clength != length) {
1994 http_seterr(HTTP_PROTOCOL_ERROR);
1995 goto ouch;
1996 }
1997 if (clength == -1)
1998 clength = length;
1999 if (clength != -1)
2000 length = offset + clength;
2001 if (length != -1 && size != -1 && length != size) {
2002 http_seterr(HTTP_PROTOCOL_ERROR);
2003 goto ouch;
2004 }
2005 if (size == -1)
2006 size = length;
2007
2008 /* fill in stats */
2009 if (us) {
2010 us->size = size;
2011 us->atime = us->mtime = mtime;
2012 }
2013
2014 /* too far? */
2015 if (URL->offset > 0 && offset > URL->offset) {
2016 http_seterr(HTTP_PROTOCOL_ERROR);
2017 goto ouch;
2018 }
2019
2020 /* report back real offset and size */
2021 URL->offset = offset;
2022 URL->length = clength;
2023
2024 /* wrap it up in a FILE */
2025 if ((f = http_funopen(conn, chunked)) == NULL) {
2026 fetch_syserr();
2027 goto ouch;
2028 }
2029
2030 if (url != URL)
2031 fetchFreeURL(url);
2032 if (purl)
2033 fetchFreeURL(purl);
2034
2035 if (HTTP_ERROR(conn->err)) {
2036 http_print_html(stderr, f);
2037 fclose(f);
2038 f = NULL;
2039 }
2040 clean_http_headerbuf(&headerbuf);
2041 clean_http_auth_challenges(&server_challenges);
2042 clean_http_auth_challenges(&proxy_challenges);
2043 return (f);
2044
2045 ouch:
2046 if (url != URL)
2047 fetchFreeURL(url);
2048 if (purl)
2049 fetchFreeURL(purl);
2050 if (conn != NULL)
2051 fetch_close(conn);
2052 clean_http_headerbuf(&headerbuf);
2053 clean_http_auth_challenges(&server_challenges);
2054 clean_http_auth_challenges(&proxy_challenges);
2055 return (NULL);
2056 }
2057
2058
2059 /*****************************************************************************
2060 * Entry points
2061 */
2062
2063 /*
2064 * Retrieve and stat a file by HTTP
2065 */
2066 FILE *
fetchXGetHTTP(struct url * URL,struct url_stat * us,const char * flags)2067 fetchXGetHTTP(struct url *URL, struct url_stat *us, const char *flags)
2068 {
2069 return (http_request(URL, "GET", us, http_get_proxy(URL, flags), flags));
2070 }
2071
2072 /*
2073 * Retrieve a file by HTTP
2074 */
2075 FILE *
fetchGetHTTP(struct url * URL,const char * flags)2076 fetchGetHTTP(struct url *URL, const char *flags)
2077 {
2078 return (fetchXGetHTTP(URL, NULL, flags));
2079 }
2080
2081 /*
2082 * Store a file by HTTP
2083 */
2084 FILE *
fetchPutHTTP(struct url * URL __unused,const char * flags __unused)2085 fetchPutHTTP(struct url *URL __unused, const char *flags __unused)
2086 {
2087 warnx("fetchPutHTTP(): not implemented");
2088 return (NULL);
2089 }
2090
2091 /*
2092 * Get an HTTP document's metadata
2093 */
2094 int
fetchStatHTTP(struct url * URL,struct url_stat * us,const char * flags)2095 fetchStatHTTP(struct url *URL, struct url_stat *us, const char *flags)
2096 {
2097 FILE *f;
2098
2099 f = http_request(URL, "HEAD", us, http_get_proxy(URL, flags), flags);
2100 if (f == NULL)
2101 return (-1);
2102 fclose(f);
2103 return (0);
2104 }
2105
2106 /*
2107 * List a directory
2108 */
2109 struct url_ent *
fetchListHTTP(struct url * url __unused,const char * flags __unused)2110 fetchListHTTP(struct url *url __unused, const char *flags __unused)
2111 {
2112 warnx("fetchListHTTP(): not implemented");
2113 return (NULL);
2114 }
2115
2116 /*
2117 * Arbitrary HTTP verb and content requests
2118 */
2119 FILE *
fetchReqHTTP(struct url * URL,const char * method,const char * flags,const char * content_type,const char * body)2120 fetchReqHTTP(struct url *URL, const char *method, const char *flags,
2121 const char *content_type, const char *body)
2122 {
2123
2124 return (http_request_body(URL, method, NULL, http_get_proxy(URL, flags),
2125 flags, content_type, body));
2126 }
2127