common.c revision 288217
1/*-
2 * Copyright (c) 1998-2014 Dag-Erling Sm��rgrav
3 * Copyright (c) 2013 Michael Gmelin <freebsd@grem.de>
4 * All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 * 1. Redistributions of source code must retain the above copyright
10 *    notice, this list of conditions and the following disclaimer
11 *    in this position and unchanged.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 *    notice, this list of conditions and the following disclaimer in the
14 *    documentation and/or other materials provided with the distribution.
15 * 3. The name of the author may not be used to endorse or promote products
16 *    derived from this software without specific prior written permission
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29
30#include <sys/cdefs.h>
31__FBSDID("$FreeBSD: head/lib/libfetch/common.c 288217 2015-09-25 14:24:23Z grembo $");
32
33#include <sys/param.h>
34#include <sys/socket.h>
35#include <sys/time.h>
36#include <sys/uio.h>
37
38#include <netinet/in.h>
39
40#include <ctype.h>
41#include <errno.h>
42#include <fcntl.h>
43#include <netdb.h>
44#include <poll.h>
45#include <pwd.h>
46#include <stdarg.h>
47#include <stdlib.h>
48#include <stdio.h>
49#include <string.h>
50#include <unistd.h>
51
52#ifdef WITH_SSL
53#include <openssl/x509v3.h>
54#endif
55
56#include "fetch.h"
57#include "common.h"
58
59
60/*** Local data **************************************************************/
61
62/*
63 * Error messages for resolver errors
64 */
65static struct fetcherr netdb_errlist[] = {
66#ifdef EAI_NODATA
67	{ EAI_NODATA,	FETCH_RESOLV,	"Host not found" },
68#endif
69	{ EAI_AGAIN,	FETCH_TEMP,	"Transient resolver failure" },
70	{ EAI_FAIL,	FETCH_RESOLV,	"Non-recoverable resolver failure" },
71	{ EAI_NONAME,	FETCH_RESOLV,	"No address record" },
72	{ -1,		FETCH_UNKNOWN,	"Unknown resolver error" }
73};
74
75/* End-of-Line */
76static const char ENDL[2] = "\r\n";
77
78
79/*** Error-reporting functions ***********************************************/
80
81/*
82 * Map error code to string
83 */
84static struct fetcherr *
85fetch_finderr(struct fetcherr *p, int e)
86{
87	while (p->num != -1 && p->num != e)
88		p++;
89	return (p);
90}
91
92/*
93 * Set error code
94 */
95void
96fetch_seterr(struct fetcherr *p, int e)
97{
98	p = fetch_finderr(p, e);
99	fetchLastErrCode = p->cat;
100	snprintf(fetchLastErrString, MAXERRSTRING, "%s", p->string);
101}
102
103/*
104 * Set error code according to errno
105 */
106void
107fetch_syserr(void)
108{
109	switch (errno) {
110	case 0:
111		fetchLastErrCode = FETCH_OK;
112		break;
113	case EPERM:
114	case EACCES:
115	case EROFS:
116	case EAUTH:
117	case ENEEDAUTH:
118		fetchLastErrCode = FETCH_AUTH;
119		break;
120	case ENOENT:
121	case EISDIR: /* XXX */
122		fetchLastErrCode = FETCH_UNAVAIL;
123		break;
124	case ENOMEM:
125		fetchLastErrCode = FETCH_MEMORY;
126		break;
127	case EBUSY:
128	case EAGAIN:
129		fetchLastErrCode = FETCH_TEMP;
130		break;
131	case EEXIST:
132		fetchLastErrCode = FETCH_EXISTS;
133		break;
134	case ENOSPC:
135		fetchLastErrCode = FETCH_FULL;
136		break;
137	case EADDRINUSE:
138	case EADDRNOTAVAIL:
139	case ENETDOWN:
140	case ENETUNREACH:
141	case ENETRESET:
142	case EHOSTUNREACH:
143		fetchLastErrCode = FETCH_NETWORK;
144		break;
145	case ECONNABORTED:
146	case ECONNRESET:
147		fetchLastErrCode = FETCH_ABORT;
148		break;
149	case ETIMEDOUT:
150		fetchLastErrCode = FETCH_TIMEOUT;
151		break;
152	case ECONNREFUSED:
153	case EHOSTDOWN:
154		fetchLastErrCode = FETCH_DOWN;
155		break;
156default:
157		fetchLastErrCode = FETCH_UNKNOWN;
158	}
159	snprintf(fetchLastErrString, MAXERRSTRING, "%s", strerror(errno));
160}
161
162
163/*
164 * Emit status message
165 */
166void
167fetch_info(const char *fmt, ...)
168{
169	va_list ap;
170
171	va_start(ap, fmt);
172	vfprintf(stderr, fmt, ap);
173	va_end(ap);
174	fputc('\n', stderr);
175}
176
177
178/*** Network-related utility functions ***************************************/
179
180/*
181 * Return the default port for a scheme
182 */
183int
184fetch_default_port(const char *scheme)
185{
186	struct servent *se;
187
188	if ((se = getservbyname(scheme, "tcp")) != NULL)
189		return (ntohs(se->s_port));
190	if (strcasecmp(scheme, SCHEME_FTP) == 0)
191		return (FTP_DEFAULT_PORT);
192	if (strcasecmp(scheme, SCHEME_HTTP) == 0)
193		return (HTTP_DEFAULT_PORT);
194	return (0);
195}
196
197/*
198 * Return the default proxy port for a scheme
199 */
200int
201fetch_default_proxy_port(const char *scheme)
202{
203	if (strcasecmp(scheme, SCHEME_FTP) == 0)
204		return (FTP_DEFAULT_PROXY_PORT);
205	if (strcasecmp(scheme, SCHEME_HTTP) == 0)
206		return (HTTP_DEFAULT_PROXY_PORT);
207	return (0);
208}
209
210
211/*
212 * Create a connection for an existing descriptor.
213 */
214conn_t *
215fetch_reopen(int sd)
216{
217	conn_t *conn;
218	int opt = 1;
219
220	/* allocate and fill connection structure */
221	if ((conn = calloc(1, sizeof(*conn))) == NULL)
222		return (NULL);
223	fcntl(sd, F_SETFD, FD_CLOEXEC);
224	setsockopt(sd, SOL_SOCKET, SO_NOSIGPIPE, &opt, sizeof opt);
225	conn->sd = sd;
226	++conn->ref;
227	return (conn);
228}
229
230
231/*
232 * Bump a connection's reference count.
233 */
234conn_t *
235fetch_ref(conn_t *conn)
236{
237
238	++conn->ref;
239	return (conn);
240}
241
242
243/*
244 * Bind a socket to a specific local address
245 */
246int
247fetch_bind(int sd, int af, const char *addr)
248{
249	struct addrinfo hints, *res, *res0;
250	int err;
251
252	memset(&hints, 0, sizeof(hints));
253	hints.ai_family = af;
254	hints.ai_socktype = SOCK_STREAM;
255	hints.ai_protocol = 0;
256	if ((err = getaddrinfo(addr, NULL, &hints, &res0)) != 0)
257		return (-1);
258	for (res = res0; res; res = res->ai_next)
259		if (bind(sd, res->ai_addr, res->ai_addrlen) == 0)
260			return (0);
261	return (-1);
262}
263
264
265/*
266 * Establish a TCP connection to the specified port on the specified host.
267 */
268conn_t *
269fetch_connect(const char *host, int port, int af, int verbose)
270{
271	conn_t *conn;
272	char pbuf[10];
273	const char *bindaddr;
274	struct addrinfo hints, *res, *res0;
275	int sd, err;
276
277	DEBUG(fprintf(stderr, "---> %s:%d\n", host, port));
278
279	if (verbose)
280		fetch_info("looking up %s", host);
281
282	/* look up host name and set up socket address structure */
283	snprintf(pbuf, sizeof(pbuf), "%d", port);
284	memset(&hints, 0, sizeof(hints));
285	hints.ai_family = af;
286	hints.ai_socktype = SOCK_STREAM;
287	hints.ai_protocol = 0;
288	if ((err = getaddrinfo(host, pbuf, &hints, &res0)) != 0) {
289		netdb_seterr(err);
290		return (NULL);
291	}
292	bindaddr = getenv("FETCH_BIND_ADDRESS");
293
294	if (verbose)
295		fetch_info("connecting to %s:%d", host, port);
296
297	/* try to connect */
298	for (sd = -1, res = res0; res; sd = -1, res = res->ai_next) {
299		if ((sd = socket(res->ai_family, res->ai_socktype,
300			 res->ai_protocol)) == -1)
301			continue;
302		if (bindaddr != NULL && *bindaddr != '\0' &&
303		    fetch_bind(sd, res->ai_family, bindaddr) != 0) {
304			fetch_info("failed to bind to '%s'", bindaddr);
305			close(sd);
306			continue;
307		}
308		if (connect(sd, res->ai_addr, res->ai_addrlen) == 0 &&
309		    fcntl(sd, F_SETFL, O_NONBLOCK) == 0)
310			break;
311		close(sd);
312	}
313	freeaddrinfo(res0);
314	if (sd == -1) {
315		fetch_syserr();
316		return (NULL);
317	}
318
319	if ((conn = fetch_reopen(sd)) == NULL) {
320		fetch_syserr();
321		close(sd);
322	}
323	return (conn);
324}
325
326#ifdef WITH_SSL
327/*
328 * Convert characters A-Z to lowercase (intentionally avoid any locale
329 * specific conversions).
330 */
331static char
332fetch_ssl_tolower(char in)
333{
334	if (in >= 'A' && in <= 'Z')
335		return (in + 32);
336	else
337		return (in);
338}
339
340/*
341 * isalpha implementation that intentionally avoids any locale specific
342 * conversions.
343 */
344static int
345fetch_ssl_isalpha(char in)
346{
347	return ((in >= 'A' && in <= 'Z') || (in >= 'a' && in <= 'z'));
348}
349
350/*
351 * Check if passed hostnames a and b are equal.
352 */
353static int
354fetch_ssl_hname_equal(const char *a, size_t alen, const char *b,
355    size_t blen)
356{
357	size_t i;
358
359	if (alen != blen)
360		return (0);
361	for (i = 0; i < alen; ++i) {
362		if (fetch_ssl_tolower(a[i]) != fetch_ssl_tolower(b[i]))
363			return (0);
364	}
365	return (1);
366}
367
368/*
369 * Check if domain label is traditional, meaning that only A-Z, a-z, 0-9
370 * and '-' (hyphen) are allowed. Hyphens have to be surrounded by alpha-
371 * numeric characters. Double hyphens (like they're found in IDN a-labels
372 * 'xn--') are not allowed. Empty labels are invalid.
373 */
374static int
375fetch_ssl_is_trad_domain_label(const char *l, size_t len, int wcok)
376{
377	size_t i;
378
379	if (!len || l[0] == '-' || l[len-1] == '-')
380		return (0);
381	for (i = 0; i < len; ++i) {
382		if (!isdigit(l[i]) &&
383		    !fetch_ssl_isalpha(l[i]) &&
384		    !(l[i] == '*' && wcok) &&
385		    !(l[i] == '-' && l[i - 1] != '-'))
386			return (0);
387	}
388	return (1);
389}
390
391/*
392 * Check if host name consists only of numbers. This might indicate an IP
393 * address, which is not a good idea for CN wildcard comparison.
394 */
395static int
396fetch_ssl_hname_is_only_numbers(const char *hostname, size_t len)
397{
398	size_t i;
399
400	for (i = 0; i < len; ++i) {
401		if (!((hostname[i] >= '0' && hostname[i] <= '9') ||
402		    hostname[i] == '.'))
403			return (0);
404	}
405	return (1);
406}
407
408/*
409 * Check if the host name h passed matches the pattern passed in m which
410 * is usually part of subjectAltName or CN of a certificate presented to
411 * the client. This includes wildcard matching. The algorithm is based on
412 * RFC6125, sections 6.4.3 and 7.2, which clarifies RFC2818 and RFC3280.
413 */
414static int
415fetch_ssl_hname_match(const char *h, size_t hlen, const char *m,
416    size_t mlen)
417{
418	int delta, hdotidx, mdot1idx, wcidx;
419	const char *hdot, *mdot1, *mdot2;
420	const char *wc; /* wildcard */
421
422	if (!(h && *h && m && *m))
423		return (0);
424	if ((wc = strnstr(m, "*", mlen)) == NULL)
425		return (fetch_ssl_hname_equal(h, hlen, m, mlen));
426	wcidx = wc - m;
427	/* hostname should not be just dots and numbers */
428	if (fetch_ssl_hname_is_only_numbers(h, hlen))
429		return (0);
430	/* only one wildcard allowed in pattern */
431	if (strnstr(wc + 1, "*", mlen - wcidx - 1) != NULL)
432		return (0);
433	/*
434	 * there must be at least two more domain labels and
435	 * wildcard has to be in the leftmost label (RFC6125)
436	 */
437	mdot1 = strnstr(m, ".", mlen);
438	if (mdot1 == NULL || mdot1 < wc || (mlen - (mdot1 - m)) < 4)
439		return (0);
440	mdot1idx = mdot1 - m;
441	mdot2 = strnstr(mdot1 + 1, ".", mlen - mdot1idx - 1);
442	if (mdot2 == NULL || (mlen - (mdot2 - m)) < 2)
443		return (0);
444	/* hostname must contain a dot and not be the 1st char */
445	hdot = strnstr(h, ".", hlen);
446	if (hdot == NULL || hdot == h)
447		return (0);
448	hdotidx = hdot - h;
449	/*
450	 * host part of hostname must be at least as long as
451	 * pattern it's supposed to match
452	 */
453	if (hdotidx < mdot1idx)
454		return (0);
455	/*
456	 * don't allow wildcards in non-traditional domain names
457	 * (IDN, A-label, U-label...)
458	 */
459	if (!fetch_ssl_is_trad_domain_label(h, hdotidx, 0) ||
460	    !fetch_ssl_is_trad_domain_label(m, mdot1idx, 1))
461		return (0);
462	/* match domain part (part after first dot) */
463	if (!fetch_ssl_hname_equal(hdot, hlen - hdotidx, mdot1,
464	    mlen - mdot1idx))
465		return (0);
466	/* match part left of wildcard */
467	if (!fetch_ssl_hname_equal(h, wcidx, m, wcidx))
468		return (0);
469	/* match part right of wildcard */
470	delta = mdot1idx - wcidx - 1;
471	if (!fetch_ssl_hname_equal(hdot - delta, delta,
472	    mdot1 - delta, delta))
473		return (0);
474	/* all tests succeded, it's a match */
475	return (1);
476}
477
478/*
479 * Get numeric host address info - returns NULL if host was not an IP
480 * address. The caller is responsible for deallocation using
481 * freeaddrinfo(3).
482 */
483static struct addrinfo *
484fetch_ssl_get_numeric_addrinfo(const char *hostname, size_t len)
485{
486	struct addrinfo hints, *res;
487	char *host;
488
489	host = (char *)malloc(len + 1);
490	memcpy(host, hostname, len);
491	host[len] = '\0';
492	memset(&hints, 0, sizeof(hints));
493	hints.ai_family = PF_UNSPEC;
494	hints.ai_socktype = SOCK_STREAM;
495	hints.ai_protocol = 0;
496	hints.ai_flags = AI_NUMERICHOST;
497	/* port is not relevant for this purpose */
498	if (getaddrinfo(host, "443", &hints, &res) != 0)
499		res = NULL;
500	free(host);
501	return res;
502}
503
504/*
505 * Compare ip address in addrinfo with address passes.
506 */
507static int
508fetch_ssl_ipaddr_match_bin(const struct addrinfo *lhost, const char *rhost,
509    size_t rhostlen)
510{
511	const void *left;
512
513	if (lhost->ai_family == AF_INET && rhostlen == 4) {
514		left = (void *)&((struct sockaddr_in*)(void *)
515		    lhost->ai_addr)->sin_addr.s_addr;
516#ifdef INET6
517	} else if (lhost->ai_family == AF_INET6 && rhostlen == 16) {
518		left = (void *)&((struct sockaddr_in6 *)(void *)
519		    lhost->ai_addr)->sin6_addr;
520#endif
521	} else
522		return (0);
523	return (!memcmp(left, (const void *)rhost, rhostlen) ? 1 : 0);
524}
525
526/*
527 * Compare ip address in addrinfo with host passed. If host is not an IP
528 * address, comparison will fail.
529 */
530static int
531fetch_ssl_ipaddr_match(const struct addrinfo *laddr, const char *r,
532    size_t rlen)
533{
534	struct addrinfo *raddr;
535	int ret;
536	char *rip;
537
538	ret = 0;
539	if ((raddr = fetch_ssl_get_numeric_addrinfo(r, rlen)) == NULL)
540		return 0; /* not a numeric host */
541
542	if (laddr->ai_family == raddr->ai_family) {
543		if (laddr->ai_family == AF_INET) {
544			rip = (char *)&((struct sockaddr_in *)(void *)
545			    raddr->ai_addr)->sin_addr.s_addr;
546			ret = fetch_ssl_ipaddr_match_bin(laddr, rip, 4);
547#ifdef INET6
548		} else if (laddr->ai_family == AF_INET6) {
549			rip = (char *)&((struct sockaddr_in6 *)(void *)
550			    raddr->ai_addr)->sin6_addr;
551			ret = fetch_ssl_ipaddr_match_bin(laddr, rip, 16);
552#endif
553		}
554
555	}
556	freeaddrinfo(raddr);
557	return (ret);
558}
559
560/*
561 * Verify server certificate by subjectAltName.
562 */
563static int
564fetch_ssl_verify_altname(STACK_OF(GENERAL_NAME) *altnames,
565    const char *host, struct addrinfo *ip)
566{
567	const GENERAL_NAME *name;
568	size_t nslen;
569	int i;
570	const char *ns;
571
572	for (i = 0; i < sk_GENERAL_NAME_num(altnames); ++i) {
573#if OPENSSL_VERSION_NUMBER < 0x10000000L
574		/*
575		 * This is a workaround, since the following line causes
576		 * alignment issues in clang:
577		 * name = sk_GENERAL_NAME_value(altnames, i);
578		 * OpenSSL explicitly warns not to use those macros
579		 * directly, but there isn't much choice (and there
580		 * shouldn't be any ill side effects)
581		 */
582		name = (GENERAL_NAME *)SKM_sk_value(void, altnames, i);
583#else
584		name = sk_GENERAL_NAME_value(altnames, i);
585#endif
586		ns = (const char *)ASN1_STRING_data(name->d.ia5);
587		nslen = (size_t)ASN1_STRING_length(name->d.ia5);
588
589		if (name->type == GEN_DNS && ip == NULL &&
590		    fetch_ssl_hname_match(host, strlen(host), ns, nslen))
591			return (1);
592		else if (name->type == GEN_IPADD && ip != NULL &&
593		    fetch_ssl_ipaddr_match_bin(ip, ns, nslen))
594			return (1);
595	}
596	return (0);
597}
598
599/*
600 * Verify server certificate by CN.
601 */
602static int
603fetch_ssl_verify_cn(X509_NAME *subject, const char *host,
604    struct addrinfo *ip)
605{
606	ASN1_STRING *namedata;
607	X509_NAME_ENTRY *nameentry;
608	int cnlen, lastpos, loc, ret;
609	unsigned char *cn;
610
611	ret = 0;
612	lastpos = -1;
613	loc = -1;
614	cn = NULL;
615	/* get most specific CN (last entry in list) and compare */
616	while ((lastpos = X509_NAME_get_index_by_NID(subject,
617	    NID_commonName, lastpos)) != -1)
618		loc = lastpos;
619
620	if (loc > -1) {
621		nameentry = X509_NAME_get_entry(subject, loc);
622		namedata = X509_NAME_ENTRY_get_data(nameentry);
623		cnlen = ASN1_STRING_to_UTF8(&cn, namedata);
624		if (ip == NULL &&
625		    fetch_ssl_hname_match(host, strlen(host), cn, cnlen))
626			ret = 1;
627		else if (ip != NULL && fetch_ssl_ipaddr_match(ip, cn, cnlen))
628			ret = 1;
629		OPENSSL_free(cn);
630	}
631	return (ret);
632}
633
634/*
635 * Verify that server certificate subjectAltName/CN matches
636 * hostname. First check, if there are alternative subject names. If yes,
637 * those have to match. Only if those don't exist it falls back to
638 * checking the subject's CN.
639 */
640static int
641fetch_ssl_verify_hname(X509 *cert, const char *host)
642{
643	struct addrinfo *ip;
644	STACK_OF(GENERAL_NAME) *altnames;
645	X509_NAME *subject;
646	int ret;
647
648	ret = 0;
649	ip = fetch_ssl_get_numeric_addrinfo(host, strlen(host));
650	altnames = X509_get_ext_d2i(cert, NID_subject_alt_name,
651	    NULL, NULL);
652
653	if (altnames != NULL) {
654		ret = fetch_ssl_verify_altname(altnames, host, ip);
655	} else {
656		subject = X509_get_subject_name(cert);
657		if (subject != NULL)
658			ret = fetch_ssl_verify_cn(subject, host, ip);
659	}
660
661	if (ip != NULL)
662		freeaddrinfo(ip);
663	if (altnames != NULL)
664		GENERAL_NAMES_free(altnames);
665	return (ret);
666}
667
668/*
669 * Configure transport security layer based on environment.
670 */
671static void
672fetch_ssl_setup_transport_layer(SSL_CTX *ctx, int verbose)
673{
674	long ssl_ctx_options;
675
676	ssl_ctx_options = SSL_OP_ALL | SSL_OP_NO_SSLv2 | SSL_OP_NO_TICKET;
677	if (getenv("SSL_ALLOW_SSL3") == NULL)
678		ssl_ctx_options |= SSL_OP_NO_SSLv3;
679	if (getenv("SSL_NO_TLS1") != NULL)
680		ssl_ctx_options |= SSL_OP_NO_TLSv1;
681	if (getenv("SSL_NO_TLS1_1") != NULL)
682		ssl_ctx_options |= SSL_OP_NO_TLSv1_1;
683	if (getenv("SSL_NO_TLS1_2") != NULL)
684		ssl_ctx_options |= SSL_OP_NO_TLSv1_2;
685	if (verbose)
686		fetch_info("SSL options: %lx", ssl_ctx_options);
687	SSL_CTX_set_options(ctx, ssl_ctx_options);
688}
689
690
691/*
692 * Configure peer verification based on environment.
693 */
694#define LOCAL_CERT_FILE	"/usr/local/etc/ssl/cert.pem"
695#define BASE_CERT_FILE	"/etc/ssl/cert.pem"
696static int
697fetch_ssl_setup_peer_verification(SSL_CTX *ctx, int verbose)
698{
699	X509_LOOKUP *crl_lookup;
700	X509_STORE *crl_store;
701	const char *ca_cert_file, *ca_cert_path, *crl_file;
702
703	if (getenv("SSL_NO_VERIFY_PEER") == NULL) {
704		ca_cert_file = getenv("SSL_CA_CERT_FILE");
705		if (ca_cert_file == NULL &&
706		    access(LOCAL_CERT_FILE, R_OK) == 0)
707			ca_cert_file = LOCAL_CERT_FILE;
708		if (ca_cert_file == NULL)
709			ca_cert_file = BASE_CERT_FILE;
710		ca_cert_path = getenv("SSL_CA_CERT_PATH");
711		if (verbose) {
712			fetch_info("Peer verification enabled");
713			if (ca_cert_file != NULL)
714				fetch_info("Using CA cert file: %s",
715				    ca_cert_file);
716			if (ca_cert_path != NULL)
717				fetch_info("Using CA cert path: %s",
718				    ca_cert_path);
719		}
720		SSL_CTX_set_verify(ctx, SSL_VERIFY_PEER,
721		    fetch_ssl_cb_verify_crt);
722		SSL_CTX_load_verify_locations(ctx, ca_cert_file,
723		    ca_cert_path);
724		if ((crl_file = getenv("SSL_CRL_FILE")) != NULL) {
725			if (verbose)
726				fetch_info("Using CRL file: %s", crl_file);
727			crl_store = SSL_CTX_get_cert_store(ctx);
728			crl_lookup = X509_STORE_add_lookup(crl_store,
729			    X509_LOOKUP_file());
730			if (crl_lookup == NULL ||
731			    !X509_load_crl_file(crl_lookup, crl_file,
732				X509_FILETYPE_PEM)) {
733				fprintf(stderr,
734				    "Could not load CRL file %s\n",
735				    crl_file);
736				return (0);
737			}
738			X509_STORE_set_flags(crl_store,
739			    X509_V_FLAG_CRL_CHECK |
740			    X509_V_FLAG_CRL_CHECK_ALL);
741		}
742	}
743	return (1);
744}
745
746/*
747 * Configure client certificate based on environment.
748 */
749static int
750fetch_ssl_setup_client_certificate(SSL_CTX *ctx, int verbose)
751{
752	const char *client_cert_file, *client_key_file;
753
754	if ((client_cert_file = getenv("SSL_CLIENT_CERT_FILE")) != NULL) {
755		client_key_file = getenv("SSL_CLIENT_KEY_FILE") != NULL ?
756		    getenv("SSL_CLIENT_KEY_FILE") : client_cert_file;
757		if (verbose) {
758			fetch_info("Using client cert file: %s",
759			    client_cert_file);
760			fetch_info("Using client key file: %s",
761			    client_key_file);
762		}
763		if (SSL_CTX_use_certificate_chain_file(ctx,
764			client_cert_file) != 1) {
765			fprintf(stderr,
766			    "Could not load client certificate %s\n",
767			    client_cert_file);
768			return (0);
769		}
770		if (SSL_CTX_use_PrivateKey_file(ctx, client_key_file,
771			SSL_FILETYPE_PEM) != 1) {
772			fprintf(stderr,
773			    "Could not load client key %s\n",
774			    client_key_file);
775			return (0);
776		}
777	}
778	return (1);
779}
780
781/*
782 * Callback for SSL certificate verification, this is called on server
783 * cert verification. It takes no decision, but informs the user in case
784 * verification failed.
785 */
786int
787fetch_ssl_cb_verify_crt(int verified, X509_STORE_CTX *ctx)
788{
789	X509 *crt;
790	X509_NAME *name;
791	char *str;
792
793	str = NULL;
794	if (!verified) {
795		if ((crt = X509_STORE_CTX_get_current_cert(ctx)) != NULL &&
796		    (name = X509_get_subject_name(crt)) != NULL)
797			str = X509_NAME_oneline(name, 0, 0);
798		fprintf(stderr, "Certificate verification failed for %s\n",
799		    str != NULL ? str : "no relevant certificate");
800		OPENSSL_free(str);
801	}
802	return (verified);
803}
804
805#endif
806
807/*
808 * Enable SSL on a connection.
809 */
810int
811fetch_ssl(conn_t *conn, const struct url *URL, int verbose)
812{
813#ifdef WITH_SSL
814	int ret, ssl_err;
815	X509_NAME *name;
816	char *str;
817
818	/* Init the SSL library and context */
819	if (!SSL_library_init()){
820		fprintf(stderr, "SSL library init failed\n");
821		return (-1);
822	}
823
824	SSL_load_error_strings();
825
826	conn->ssl_meth = SSLv23_client_method();
827	conn->ssl_ctx = SSL_CTX_new(conn->ssl_meth);
828	SSL_CTX_set_mode(conn->ssl_ctx, SSL_MODE_AUTO_RETRY);
829
830	fetch_ssl_setup_transport_layer(conn->ssl_ctx, verbose);
831	if (!fetch_ssl_setup_peer_verification(conn->ssl_ctx, verbose))
832		return (-1);
833	if (!fetch_ssl_setup_client_certificate(conn->ssl_ctx, verbose))
834		return (-1);
835
836	conn->ssl = SSL_new(conn->ssl_ctx);
837	if (conn->ssl == NULL) {
838		fprintf(stderr, "SSL context creation failed\n");
839		return (-1);
840	}
841	SSL_set_fd(conn->ssl, conn->sd);
842
843#if OPENSSL_VERSION_NUMBER >= 0x0090806fL && !defined(OPENSSL_NO_TLSEXT)
844	if (!SSL_set_tlsext_host_name(conn->ssl,
845	    __DECONST(struct url *, URL)->host)) {
846		fprintf(stderr,
847		    "TLS server name indication extension failed for host %s\n",
848		    URL->host);
849		return (-1);
850	}
851#endif
852	while ((ret = SSL_connect(conn->ssl)) == -1) {
853		ssl_err = SSL_get_error(conn->ssl, ret);
854		if (ssl_err != SSL_ERROR_WANT_READ &&
855		    ssl_err != SSL_ERROR_WANT_WRITE) {
856			ERR_print_errors_fp(stderr);
857			return (-1);
858		}
859	}
860	conn->ssl_cert = SSL_get_peer_certificate(conn->ssl);
861
862	if (conn->ssl_cert == NULL) {
863		fprintf(stderr, "No server SSL certificate\n");
864		return (-1);
865	}
866
867	if (getenv("SSL_NO_VERIFY_HOSTNAME") == NULL) {
868		if (verbose)
869			fetch_info("Verify hostname");
870		if (!fetch_ssl_verify_hname(conn->ssl_cert, URL->host)) {
871			fprintf(stderr,
872			    "SSL certificate subject doesn't match host %s\n",
873			    URL->host);
874			return (-1);
875		}
876	}
877
878	if (verbose) {
879		fetch_info("%s connection established using %s",
880		    SSL_get_version(conn->ssl), SSL_get_cipher(conn->ssl));
881		name = X509_get_subject_name(conn->ssl_cert);
882		str = X509_NAME_oneline(name, 0, 0);
883		fetch_info("Certificate subject: %s", str);
884		OPENSSL_free(str);
885		name = X509_get_issuer_name(conn->ssl_cert);
886		str = X509_NAME_oneline(name, 0, 0);
887		fetch_info("Certificate issuer: %s", str);
888		OPENSSL_free(str);
889	}
890
891	return (0);
892#else
893	(void)conn;
894	(void)verbose;
895	fprintf(stderr, "SSL support disabled\n");
896	return (-1);
897#endif
898}
899
900#define FETCH_READ_WAIT		-2
901#define FETCH_READ_ERROR	-1
902#define FETCH_READ_DONE		 0
903
904#ifdef WITH_SSL
905static ssize_t
906fetch_ssl_read(SSL *ssl, char *buf, size_t len)
907{
908	ssize_t rlen;
909	int ssl_err;
910
911	rlen = SSL_read(ssl, buf, len);
912	if (rlen < 0) {
913		ssl_err = SSL_get_error(ssl, rlen);
914		if (ssl_err == SSL_ERROR_WANT_READ ||
915		    ssl_err == SSL_ERROR_WANT_WRITE) {
916			return (FETCH_READ_WAIT);
917		} else {
918			ERR_print_errors_fp(stderr);
919			return (FETCH_READ_ERROR);
920		}
921	}
922	return (rlen);
923}
924#endif
925
926static ssize_t
927fetch_socket_read(int sd, char *buf, size_t len)
928{
929	ssize_t rlen;
930
931	rlen = read(sd, buf, len);
932	if (rlen < 0) {
933		if (errno == EAGAIN || (errno == EINTR && fetchRestartCalls))
934			return (FETCH_READ_WAIT);
935		else
936			return (FETCH_READ_ERROR);
937	}
938	return (rlen);
939}
940
941/*
942 * Read a character from a connection w/ timeout
943 */
944ssize_t
945fetch_read(conn_t *conn, char *buf, size_t len)
946{
947	struct timeval now, timeout, delta;
948	struct pollfd pfd;
949	ssize_t rlen;
950	int deltams;
951
952	if (fetchTimeout > 0) {
953		gettimeofday(&timeout, NULL);
954		timeout.tv_sec += fetchTimeout;
955	}
956
957	deltams = INFTIM;
958	memset(&pfd, 0, sizeof pfd);
959	pfd.fd = conn->sd;
960	pfd.events = POLLIN | POLLERR;
961
962	for (;;) {
963		/*
964		 * The socket is non-blocking.  Instead of the canonical
965		 * poll() -> read(), we do the following:
966		 *
967		 * 1) call read() or SSL_read().
968		 * 2) if we received some data, return it.
969		 * 3) if an error occurred, return -1.
970		 * 4) if read() or SSL_read() signaled EOF, return.
971		 * 5) if we did not receive any data but we're not at EOF,
972		 *    call poll().
973		 *
974		 * In the SSL case, this is necessary because if we
975		 * receive a close notification, we have to call
976		 * SSL_read() one additional time after we've read
977		 * everything we received.
978		 *
979		 * In the non-SSL case, it may improve performance (very
980		 * slightly) when reading small amounts of data.
981		 */
982#ifdef WITH_SSL
983		if (conn->ssl != NULL)
984			rlen = fetch_ssl_read(conn->ssl, buf, len);
985		else
986#endif
987			rlen = fetch_socket_read(conn->sd, buf, len);
988		if (rlen >= 0) {
989			break;
990		} else if (rlen == FETCH_READ_ERROR) {
991			fetch_syserr();
992			return (-1);
993		}
994		// assert(rlen == FETCH_READ_WAIT);
995		if (fetchTimeout > 0) {
996			gettimeofday(&now, NULL);
997			if (!timercmp(&timeout, &now, >)) {
998				errno = ETIMEDOUT;
999				fetch_syserr();
1000				return (-1);
1001			}
1002			timersub(&timeout, &now, &delta);
1003			deltams = delta.tv_sec * 1000 +
1004			    delta.tv_usec / 1000;;
1005		}
1006		errno = 0;
1007		pfd.revents = 0;
1008		if (poll(&pfd, 1, deltams) < 0) {
1009			if (errno == EINTR && fetchRestartCalls)
1010				continue;
1011			fetch_syserr();
1012			return (-1);
1013		}
1014	}
1015	return (rlen);
1016}
1017
1018
1019/*
1020 * Read a line of text from a connection w/ timeout
1021 */
1022#define MIN_BUF_SIZE 1024
1023
1024int
1025fetch_getln(conn_t *conn)
1026{
1027	char *tmp;
1028	size_t tmpsize;
1029	ssize_t len;
1030	char c;
1031
1032	if (conn->buf == NULL) {
1033		if ((conn->buf = malloc(MIN_BUF_SIZE)) == NULL) {
1034			errno = ENOMEM;
1035			return (-1);
1036		}
1037		conn->bufsize = MIN_BUF_SIZE;
1038	}
1039
1040	conn->buf[0] = '\0';
1041	conn->buflen = 0;
1042
1043	do {
1044		len = fetch_read(conn, &c, 1);
1045		if (len == -1)
1046			return (-1);
1047		if (len == 0)
1048			break;
1049		conn->buf[conn->buflen++] = c;
1050		if (conn->buflen == conn->bufsize) {
1051			tmp = conn->buf;
1052			tmpsize = conn->bufsize * 2 + 1;
1053			if ((tmp = realloc(tmp, tmpsize)) == NULL) {
1054				errno = ENOMEM;
1055				return (-1);
1056			}
1057			conn->buf = tmp;
1058			conn->bufsize = tmpsize;
1059		}
1060	} while (c != '\n');
1061
1062	conn->buf[conn->buflen] = '\0';
1063	DEBUG(fprintf(stderr, "<<< %s", conn->buf));
1064	return (0);
1065}
1066
1067
1068/*
1069 * Write to a connection w/ timeout
1070 */
1071ssize_t
1072fetch_write(conn_t *conn, const char *buf, size_t len)
1073{
1074	struct iovec iov;
1075
1076	iov.iov_base = __DECONST(char *, buf);
1077	iov.iov_len = len;
1078	return fetch_writev(conn, &iov, 1);
1079}
1080
1081/*
1082 * Write a vector to a connection w/ timeout
1083 * Note: can modify the iovec.
1084 */
1085ssize_t
1086fetch_writev(conn_t *conn, struct iovec *iov, int iovcnt)
1087{
1088	struct timeval now, timeout, delta;
1089	struct pollfd pfd;
1090	ssize_t wlen, total;
1091	int deltams;
1092
1093	memset(&pfd, 0, sizeof pfd);
1094	if (fetchTimeout) {
1095		pfd.fd = conn->sd;
1096		pfd.events = POLLOUT | POLLERR;
1097		gettimeofday(&timeout, NULL);
1098		timeout.tv_sec += fetchTimeout;
1099	}
1100
1101	total = 0;
1102	while (iovcnt > 0) {
1103		while (fetchTimeout && pfd.revents == 0) {
1104			gettimeofday(&now, NULL);
1105			if (!timercmp(&timeout, &now, >)) {
1106				errno = ETIMEDOUT;
1107				fetch_syserr();
1108				return (-1);
1109			}
1110			timersub(&timeout, &now, &delta);
1111			deltams = delta.tv_sec * 1000 +
1112			    delta.tv_usec / 1000;
1113			errno = 0;
1114			pfd.revents = 0;
1115			if (poll(&pfd, 1, deltams) < 0) {
1116				/* POSIX compliance */
1117				if (errno == EAGAIN)
1118					continue;
1119				if (errno == EINTR && fetchRestartCalls)
1120					continue;
1121				return (-1);
1122			}
1123		}
1124		errno = 0;
1125#ifdef WITH_SSL
1126		if (conn->ssl != NULL)
1127			wlen = SSL_write(conn->ssl,
1128			    iov->iov_base, iov->iov_len);
1129		else
1130#endif
1131			wlen = writev(conn->sd, iov, iovcnt);
1132		if (wlen == 0) {
1133			/* we consider a short write a failure */
1134			/* XXX perhaps we shouldn't in the SSL case */
1135			errno = EPIPE;
1136			fetch_syserr();
1137			return (-1);
1138		}
1139		if (wlen < 0) {
1140			if (errno == EINTR && fetchRestartCalls)
1141				continue;
1142			return (-1);
1143		}
1144		total += wlen;
1145		while (iovcnt > 0 && wlen >= (ssize_t)iov->iov_len) {
1146			wlen -= iov->iov_len;
1147			iov++;
1148			iovcnt--;
1149		}
1150		if (iovcnt > 0) {
1151			iov->iov_len -= wlen;
1152			iov->iov_base = __DECONST(char *, iov->iov_base) + wlen;
1153		}
1154	}
1155	return (total);
1156}
1157
1158
1159/*
1160 * Write a line of text to a connection w/ timeout
1161 */
1162int
1163fetch_putln(conn_t *conn, const char *str, size_t len)
1164{
1165	struct iovec iov[2];
1166	int ret;
1167
1168	DEBUG(fprintf(stderr, ">>> %s\n", str));
1169	iov[0].iov_base = __DECONST(char *, str);
1170	iov[0].iov_len = len;
1171	iov[1].iov_base = __DECONST(char *, ENDL);
1172	iov[1].iov_len = sizeof(ENDL);
1173	if (len == 0)
1174		ret = fetch_writev(conn, &iov[1], 1);
1175	else
1176		ret = fetch_writev(conn, iov, 2);
1177	if (ret == -1)
1178		return (-1);
1179	return (0);
1180}
1181
1182
1183/*
1184 * Close connection
1185 */
1186int
1187fetch_close(conn_t *conn)
1188{
1189	int ret;
1190
1191	if (--conn->ref > 0)
1192		return (0);
1193#ifdef WITH_SSL
1194	if (conn->ssl) {
1195		SSL_shutdown(conn->ssl);
1196		SSL_set_connect_state(conn->ssl);
1197		SSL_free(conn->ssl);
1198		conn->ssl = NULL;
1199	}
1200	if (conn->ssl_ctx) {
1201		SSL_CTX_free(conn->ssl_ctx);
1202		conn->ssl_ctx = NULL;
1203	}
1204	if (conn->ssl_cert) {
1205		X509_free(conn->ssl_cert);
1206		conn->ssl_cert = NULL;
1207	}
1208#endif
1209	ret = close(conn->sd);
1210	free(conn->buf);
1211	free(conn);
1212	return (ret);
1213}
1214
1215
1216/*** Directory-related utility functions *************************************/
1217
1218int
1219fetch_add_entry(struct url_ent **p, int *size, int *len,
1220    const char *name, struct url_stat *us)
1221{
1222	struct url_ent *tmp;
1223
1224	if (*p == NULL) {
1225		*size = 0;
1226		*len = 0;
1227	}
1228
1229	if (*len >= *size - 1) {
1230		tmp = realloc(*p, (*size * 2 + 1) * sizeof(**p));
1231		if (tmp == NULL) {
1232			errno = ENOMEM;
1233			fetch_syserr();
1234			return (-1);
1235		}
1236		*size = (*size * 2 + 1);
1237		*p = tmp;
1238	}
1239
1240	tmp = *p + *len;
1241	snprintf(tmp->name, PATH_MAX, "%s", name);
1242	memcpy(&tmp->stat, us, sizeof(*us));
1243
1244	(*len)++;
1245	(++tmp)->name[0] = 0;
1246
1247	return (0);
1248}
1249
1250
1251/*** Authentication-related utility functions ********************************/
1252
1253static const char *
1254fetch_read_word(FILE *f)
1255{
1256	static char word[1024];
1257
1258	if (fscanf(f, " %1023s ", word) != 1)
1259		return (NULL);
1260	return (word);
1261}
1262
1263/*
1264 * Get authentication data for a URL from .netrc
1265 */
1266int
1267fetch_netrc_auth(struct url *url)
1268{
1269	char fn[PATH_MAX];
1270	const char *word;
1271	char *p;
1272	FILE *f;
1273
1274	if ((p = getenv("NETRC")) != NULL) {
1275		if (snprintf(fn, sizeof(fn), "%s", p) >= (int)sizeof(fn)) {
1276			fetch_info("$NETRC specifies a file name "
1277			    "longer than PATH_MAX");
1278			return (-1);
1279		}
1280	} else {
1281		if ((p = getenv("HOME")) != NULL) {
1282			struct passwd *pwd;
1283
1284			if ((pwd = getpwuid(getuid())) == NULL ||
1285			    (p = pwd->pw_dir) == NULL)
1286				return (-1);
1287		}
1288		if (snprintf(fn, sizeof(fn), "%s/.netrc", p) >= (int)sizeof(fn))
1289			return (-1);
1290	}
1291
1292	if ((f = fopen(fn, "r")) == NULL)
1293		return (-1);
1294	while ((word = fetch_read_word(f)) != NULL) {
1295		if (strcmp(word, "default") == 0) {
1296			DEBUG(fetch_info("Using default .netrc settings"));
1297			break;
1298		}
1299		if (strcmp(word, "machine") == 0 &&
1300		    (word = fetch_read_word(f)) != NULL &&
1301		    strcasecmp(word, url->host) == 0) {
1302			DEBUG(fetch_info("Using .netrc settings for %s", word));
1303			break;
1304		}
1305	}
1306	if (word == NULL)
1307		goto ferr;
1308	while ((word = fetch_read_word(f)) != NULL) {
1309		if (strcmp(word, "login") == 0) {
1310			if ((word = fetch_read_word(f)) == NULL)
1311				goto ferr;
1312			if (snprintf(url->user, sizeof(url->user),
1313				"%s", word) > (int)sizeof(url->user)) {
1314				fetch_info("login name in .netrc is too long");
1315				url->user[0] = '\0';
1316			}
1317		} else if (strcmp(word, "password") == 0) {
1318			if ((word = fetch_read_word(f)) == NULL)
1319				goto ferr;
1320			if (snprintf(url->pwd, sizeof(url->pwd),
1321				"%s", word) > (int)sizeof(url->pwd)) {
1322				fetch_info("password in .netrc is too long");
1323				url->pwd[0] = '\0';
1324			}
1325		} else if (strcmp(word, "account") == 0) {
1326			if ((word = fetch_read_word(f)) == NULL)
1327				goto ferr;
1328			/* XXX not supported! */
1329		} else {
1330			break;
1331		}
1332	}
1333	fclose(f);
1334	return (0);
1335 ferr:
1336	fclose(f);
1337	return (-1);
1338}
1339
1340/*
1341 * The no_proxy environment variable specifies a set of domains for
1342 * which the proxy should not be consulted; the contents is a comma-,
1343 * or space-separated list of domain names.  A single asterisk will
1344 * override all proxy variables and no transactions will be proxied
1345 * (for compatability with lynx and curl, see the discussion at
1346 * <http://curl.haxx.se/mail/archive_pre_oct_99/0009.html>).
1347 */
1348int
1349fetch_no_proxy_match(const char *host)
1350{
1351	const char *no_proxy, *p, *q;
1352	size_t h_len, d_len;
1353
1354	if ((no_proxy = getenv("NO_PROXY")) == NULL &&
1355	    (no_proxy = getenv("no_proxy")) == NULL)
1356		return (0);
1357
1358	/* asterisk matches any hostname */
1359	if (strcmp(no_proxy, "*") == 0)
1360		return (1);
1361
1362	h_len = strlen(host);
1363	p = no_proxy;
1364	do {
1365		/* position p at the beginning of a domain suffix */
1366		while (*p == ',' || isspace((unsigned char)*p))
1367			p++;
1368
1369		/* position q at the first separator character */
1370		for (q = p; *q; ++q)
1371			if (*q == ',' || isspace((unsigned char)*q))
1372				break;
1373
1374		d_len = q - p;
1375		if (d_len > 0 && h_len >= d_len &&
1376		    strncasecmp(host + h_len - d_len,
1377			p, d_len) == 0) {
1378			/* domain name matches */
1379			return (1);
1380		}
1381
1382		p = q + 1;
1383	} while (*q);
1384
1385	return (0);
1386}
1387