1 /* Copyright 2006-2007 Niels Provos
2  * Copyright 2007-2012 Nick Mathewson and Niels Provos
3  *
4  * Redistribution and use in source and binary forms, with or without
5  * modification, are permitted provided that the following conditions
6  * are met:
7  * 1. Redistributions of source code must retain the above copyright
8  *    notice, this list of conditions and the following disclaimer.
9  * 2. Redistributions in binary form must reproduce the above copyright
10  *    notice, this list of conditions and the following disclaimer in the
11  *    documentation and/or other materials provided with the distribution.
12  * 3. The name of the author may not be used to endorse or promote products
13  *    derived from this software without specific prior written permission.
14  *
15  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25  */
26 
27 /* Based on software by Adam Langly. Adam's original message:
28  *
29  * Async DNS Library
30  * Adam Langley <agl@imperialviolet.org>
31  * http://www.imperialviolet.org/eventdns.html
32  * Public Domain code
33  *
34  * This software is Public Domain. To view a copy of the public domain dedication,
35  * visit http://creativecommons.org/licenses/publicdomain/ or send a letter to
36  * Creative Commons, 559 Nathan Abbott Way, Stanford, California 94305, USA.
37  *
38  * I ask and expect, but do not require, that all derivative works contain an
39  * attribution similar to:
40  *	Parts developed by Adam Langley <agl@imperialviolet.org>
41  *
42  * You may wish to replace the word "Parts" with something else depending on
43  * the amount of original code.
44  *
45  * (Derivative works does not include programs which link against, run or include
46  * the source verbatim in their source distributions)
47  *
48  * Version: 0.1b
49  */
50 
51 #include <sys/types.h>
52 #include "event2/event-config.h"
53 
54 #ifndef _FORTIFY_SOURCE
55 #define _FORTIFY_SOURCE 3
56 #endif
57 
58 #include <string.h>
59 #include <fcntl.h>
60 #ifdef _EVENT_HAVE_SYS_TIME_H
61 #include <sys/time.h>
62 #endif
63 #ifdef _EVENT_HAVE_STDINT_H
64 #include <stdint.h>
65 #endif
66 #include <stdlib.h>
67 #include <string.h>
68 #include <errno.h>
69 #ifdef _EVENT_HAVE_UNISTD_H
70 #include <unistd.h>
71 #endif
72 #include <limits.h>
73 #include <sys/stat.h>
74 #include <stdio.h>
75 #include <stdarg.h>
76 #ifdef WIN32
77 #include <winsock2.h>
78 #include <ws2tcpip.h>
79 #ifndef _WIN32_IE
80 #define _WIN32_IE 0x400
81 #endif
82 #include <shlobj.h>
83 #endif
84 
85 #include "event2/dns.h"
86 #include "event2/dns_struct.h"
87 #include "event2/dns_compat.h"
88 #include "event2/util.h"
89 #include "event2/event.h"
90 #include "event2/event_struct.h"
91 #include "event2/thread.h"
92 
93 #include "event2/bufferevent.h"
94 #include "event2/bufferevent_struct.h"
95 #include "bufferevent-internal.h"
96 
97 #include "defer-internal.h"
98 #include "log-internal.h"
99 #include "mm-internal.h"
100 #include "strlcpy-internal.h"
101 #include "ipv6-internal.h"
102 #include "util-internal.h"
103 #include "evthread-internal.h"
104 #ifdef WIN32
105 #include <ctype.h>
106 #include <winsock2.h>
107 #include <windows.h>
108 #include <iphlpapi.h>
109 #include <io.h>
110 #else
111 #include <sys/socket.h>
112 #include <netinet/in.h>
113 #include <arpa/inet.h>
114 #endif
115 
116 #ifdef _EVENT_HAVE_NETINET_IN6_H
117 #include <netinet/in6.h>
118 #endif
119 
120 #define EVDNS_LOG_DEBUG 0
121 #define EVDNS_LOG_WARN 1
122 #define EVDNS_LOG_MSG 2
123 
124 #ifndef HOST_NAME_MAX
125 #define HOST_NAME_MAX 255
126 #endif
127 
128 #include <stdio.h>
129 
130 #undef MIN
131 #define MIN(a,b) ((a)<(b)?(a):(b))
132 
133 #define ASSERT_VALID_REQUEST(req) \
134 	EVUTIL_ASSERT((req)->handle && (req)->handle->current_req == (req))
135 
136 #define u64 ev_uint64_t
137 #define u32 ev_uint32_t
138 #define u16 ev_uint16_t
139 #define u8  ev_uint8_t
140 
141 /* maximum number of addresses from a single packet */
142 /* that we bother recording */
143 #define MAX_V4_ADDRS 32
144 #define MAX_V6_ADDRS 32
145 
146 
147 #define TYPE_A	       EVDNS_TYPE_A
148 #define TYPE_CNAME     5
149 #define TYPE_PTR       EVDNS_TYPE_PTR
150 #define TYPE_SOA       EVDNS_TYPE_SOA
151 #define TYPE_AAAA      EVDNS_TYPE_AAAA
152 
153 #define CLASS_INET     EVDNS_CLASS_INET
154 
155 /* Persistent handle.  We keep this separate from 'struct request' since we
156  * need some object to last for as long as an evdns_request is outstanding so
157  * that it can be canceled, whereas a search request can lead to multiple
158  * 'struct request' instances being created over its lifetime. */
159 struct evdns_request {
160 	struct request *current_req;
161 	struct evdns_base *base;
162 
163 	int pending_cb; /* Waiting for its callback to be invoked; not
164 			 * owned by event base any more. */
165 
166 	/* elements used by the searching code */
167 	int search_index;
168 	struct search_state *search_state;
169 	char *search_origname;	/* needs to be free()ed */
170 	int search_flags;
171 };
172 
173 struct request {
174 	u8 *request;  /* the dns packet data */
175 	u8 request_type; /* TYPE_PTR or TYPE_A or TYPE_AAAA */
176 	unsigned int request_len;
177 	int reissue_count;
178 	int tx_count;  /* the number of times that this packet has been sent */
179 	void *user_pointer;  /* the pointer given to us for this request */
180 	evdns_callback_type user_callback;
181 	struct nameserver *ns;	/* the server which we last sent it */
182 
183 	/* these objects are kept in a circular list */
184 	/* XXX We could turn this into a CIRCLEQ. */
185 	struct request *next, *prev;
186 
187 	struct event timeout_event;
188 
189 	u16 trans_id;  /* the transaction id */
190 	unsigned request_appended :1;	/* true if the request pointer is data which follows this struct */
191 	unsigned transmit_me :1;  /* needs to be transmitted */
192 
193 	/* XXXX This is a horrible hack. */
194 	char **put_cname_in_ptr; /* store the cname here if we get one. */
195 
196 	struct evdns_base *base;
197 
198 	struct evdns_request *handle;
199 };
200 
201 struct reply {
202 	unsigned int type;
203 	unsigned int have_answer : 1;
204 	union {
205 		struct {
206 			u32 addrcount;
207 			u32 addresses[MAX_V4_ADDRS];
208 		} a;
209 		struct {
210 			u32 addrcount;
211 			struct in6_addr addresses[MAX_V6_ADDRS];
212 		} aaaa;
213 		struct {
214 			char name[HOST_NAME_MAX];
215 		} ptr;
216 	} data;
217 };
218 
219 struct nameserver {
220 	evutil_socket_t socket;	 /* a connected UDP socket */
221 	struct sockaddr_storage address;
222 	ev_socklen_t addrlen;
223 	int failed_times;  /* number of times which we have given this server a chance */
224 	int timedout;  /* number of times in a row a request has timed out */
225 	struct event event;
226 	/* these objects are kept in a circular list */
227 	struct nameserver *next, *prev;
228 	struct event timeout_event;  /* used to keep the timeout for */
229 				     /* when we next probe this server. */
230 				     /* Valid if state == 0 */
231 	/* Outstanding probe request for this nameserver, if any */
232 	struct evdns_request *probe_request;
233 	char state;  /* zero if we think that this server is down */
234 	char choked;  /* true if we have an EAGAIN from this server's socket */
235 	char write_waiting;  /* true if we are waiting for EV_WRITE events */
236 	struct evdns_base *base;
237 };
238 
239 
240 /* Represents a local port where we're listening for DNS requests. Right now, */
241 /* only UDP is supported. */
242 struct evdns_server_port {
243 	evutil_socket_t socket; /* socket we use to read queries and write replies. */
244 	int refcnt; /* reference count. */
245 	char choked; /* Are we currently blocked from writing? */
246 	char closing; /* Are we trying to close this port, pending writes? */
247 	evdns_request_callback_fn_type user_callback; /* Fn to handle requests */
248 	void *user_data; /* Opaque pointer passed to user_callback */
249 	struct event event; /* Read/write event */
250 	/* circular list of replies that we want to write. */
251 	struct server_request *pending_replies;
252 	struct event_base *event_base;
253 
254 #ifndef _EVENT_DISABLE_THREAD_SUPPORT
255 	void *lock;
256 #endif
257 };
258 
259 /* Represents part of a reply being built.	(That is, a single RR.) */
260 struct server_reply_item {
261 	struct server_reply_item *next; /* next item in sequence. */
262 	char *name; /* name part of the RR */
263 	u16 type; /* The RR type */
264 	u16 class; /* The RR class (usually CLASS_INET) */
265 	u32 ttl; /* The RR TTL */
266 	char is_name; /* True iff data is a label */
267 	u16 datalen; /* Length of data; -1 if data is a label */
268 	void *data; /* The contents of the RR */
269 };
270 
271 /* Represents a request that we've received as a DNS server, and holds */
272 /* the components of the reply as we're constructing it. */
273 struct server_request {
274 	/* Pointers to the next and previous entries on the list of replies */
275 	/* that we're waiting to write.	 Only set if we have tried to respond */
276 	/* and gotten EAGAIN. */
277 	struct server_request *next_pending;
278 	struct server_request *prev_pending;
279 
280 	u16 trans_id; /* Transaction id. */
281 	struct evdns_server_port *port; /* Which port received this request on? */
282 	struct sockaddr_storage addr; /* Where to send the response */
283 	ev_socklen_t addrlen; /* length of addr */
284 
285 	int n_answer; /* how many answer RRs have been set? */
286 	int n_authority; /* how many authority RRs have been set? */
287 	int n_additional; /* how many additional RRs have been set? */
288 
289 	struct server_reply_item *answer; /* linked list of answer RRs */
290 	struct server_reply_item *authority; /* linked list of authority RRs */
291 	struct server_reply_item *additional; /* linked list of additional RRs */
292 
293 	/* Constructed response.  Only set once we're ready to send a reply. */
294 	/* Once this is set, the RR fields are cleared, and no more should be set. */
295 	char *response;
296 	size_t response_len;
297 
298 	/* Caller-visible fields: flags, questions. */
299 	struct evdns_server_request base;
300 };
301 
302 struct evdns_base {
303 	/* An array of n_req_heads circular lists for inflight requests.
304 	 * Each inflight request req is in req_heads[req->trans_id % n_req_heads].
305 	 */
306 	struct request **req_heads;
307 	/* A circular list of requests that we're waiting to send, but haven't
308 	 * sent yet because there are too many requests inflight */
309 	struct request *req_waiting_head;
310 	/* A circular list of nameservers. */
311 	struct nameserver *server_head;
312 	int n_req_heads;
313 
314 	struct event_base *event_base;
315 
316 	/* The number of good nameservers that we have */
317 	int global_good_nameservers;
318 
319 	/* inflight requests are contained in the req_head list */
320 	/* and are actually going out across the network */
321 	int global_requests_inflight;
322 	/* requests which aren't inflight are in the waiting list */
323 	/* and are counted here */
324 	int global_requests_waiting;
325 
326 	int global_max_requests_inflight;
327 
328 	struct timeval global_timeout;	/* 5 seconds by default */
329 	int global_max_reissues;  /* a reissue occurs when we get some errors from the server */
330 	int global_max_retransmits;  /* number of times we'll retransmit a request which timed out */
331 	/* number of timeouts in a row before we consider this server to be down */
332 	int global_max_nameserver_timeout;
333 	/* true iff we will use the 0x20 hack to prevent poisoning attacks. */
334 	int global_randomize_case;
335 
336 	/* The first time that a nameserver fails, how long do we wait before
337 	 * probing to see if it has returned?  */
338 	struct timeval global_nameserver_probe_initial_timeout;
339 
340 	/** Port to bind to for outgoing DNS packets. */
341 	struct sockaddr_storage global_outgoing_address;
342 	/** ev_socklen_t for global_outgoing_address. 0 if it isn't set. */
343 	ev_socklen_t global_outgoing_addrlen;
344 
345 	struct timeval global_getaddrinfo_allow_skew;
346 
347 	int getaddrinfo_ipv4_timeouts;
348 	int getaddrinfo_ipv6_timeouts;
349 	int getaddrinfo_ipv4_answered;
350 	int getaddrinfo_ipv6_answered;
351 
352 	struct search_state *global_search_state;
353 
354 	TAILQ_HEAD(hosts_list, hosts_entry) hostsdb;
355 
356 #ifndef _EVENT_DISABLE_THREAD_SUPPORT
357 	void *lock;
358 #endif
359 };
360 
361 struct hosts_entry {
362 	TAILQ_ENTRY(hosts_entry) next;
363 	union {
364 		struct sockaddr sa;
365 		struct sockaddr_in sin;
366 		struct sockaddr_in6 sin6;
367 	} addr;
368 	int addrlen;
369 	char hostname[1];
370 };
371 
372 static struct evdns_base *current_base = NULL;
373 
374 struct evdns_base *
evdns_get_global_base(void)375 evdns_get_global_base(void)
376 {
377 	return current_base;
378 }
379 
380 /* Given a pointer to an evdns_server_request, get the corresponding */
381 /* server_request. */
382 #define TO_SERVER_REQUEST(base_ptr)					\
383 	((struct server_request*)					\
384 	  (((char*)(base_ptr) - evutil_offsetof(struct server_request, base))))
385 
386 #define REQ_HEAD(base, id) ((base)->req_heads[id % (base)->n_req_heads])
387 
388 static struct nameserver *nameserver_pick(struct evdns_base *base);
389 static void evdns_request_insert(struct request *req, struct request **head);
390 static void evdns_request_remove(struct request *req, struct request **head);
391 static void nameserver_ready_callback(evutil_socket_t fd, short events, void *arg);
392 static int evdns_transmit(struct evdns_base *base);
393 static int evdns_request_transmit(struct request *req);
394 static void nameserver_send_probe(struct nameserver *const ns);
395 static void search_request_finished(struct evdns_request *const);
396 static int search_try_next(struct evdns_request *const req);
397 static struct request *search_request_new(struct evdns_base *base, struct evdns_request *handle, int type, const char *const name, int flags, evdns_callback_type user_callback, void *user_arg);
398 static void evdns_requests_pump_waiting_queue(struct evdns_base *base);
399 static u16 transaction_id_pick(struct evdns_base *base);
400 static struct request *request_new(struct evdns_base *base, struct evdns_request *handle, int type, const char *name, int flags, evdns_callback_type callback, void *ptr);
401 static void request_submit(struct request *const req);
402 
403 static int server_request_free(struct server_request *req);
404 static void server_request_free_answers(struct server_request *req);
405 static void server_port_free(struct evdns_server_port *port);
406 static void server_port_ready_callback(evutil_socket_t fd, short events, void *arg);
407 static int evdns_base_resolv_conf_parse_impl(struct evdns_base *base, int flags, const char *const filename);
408 static int evdns_base_set_option_impl(struct evdns_base *base,
409     const char *option, const char *val, int flags);
410 static void evdns_base_free_and_unlock(struct evdns_base *base, int fail_requests);
411 
412 static int strtoint(const char *const str);
413 
414 #ifdef _EVENT_DISABLE_THREAD_SUPPORT
415 #define EVDNS_LOCK(base)  _EVUTIL_NIL_STMT
416 #define EVDNS_UNLOCK(base) _EVUTIL_NIL_STMT
417 #define ASSERT_LOCKED(base) _EVUTIL_NIL_STMT
418 #else
419 #define EVDNS_LOCK(base)			\
420 	EVLOCK_LOCK((base)->lock, 0)
421 #define EVDNS_UNLOCK(base)			\
422 	EVLOCK_UNLOCK((base)->lock, 0)
423 #define ASSERT_LOCKED(base)			\
424 	EVLOCK_ASSERT_LOCKED((base)->lock)
425 #endif
426 
427 static void
default_evdns_log_fn(int warning,const char * buf)428 default_evdns_log_fn(int warning, const char *buf)
429 {
430 	if (warning == EVDNS_LOG_WARN)
431 		event_warnx("[evdns] %s", buf);
432 	else if (warning == EVDNS_LOG_MSG)
433 		event_msgx("[evdns] %s", buf);
434 	else
435 		event_debug(("[evdns] %s", buf));
436 }
437 
438 static evdns_debug_log_fn_type evdns_log_fn = NULL;
439 
440 void
evdns_set_log_fn(evdns_debug_log_fn_type fn)441 evdns_set_log_fn(evdns_debug_log_fn_type fn)
442 {
443 	evdns_log_fn = fn;
444 }
445 
446 #ifdef __GNUC__
447 #define EVDNS_LOG_CHECK	 __attribute__ ((format(printf, 2, 3)))
448 #else
449 #define EVDNS_LOG_CHECK
450 #endif
451 
452 static void _evdns_log(int warn, const char *fmt, ...) EVDNS_LOG_CHECK;
453 static void
_evdns_log(int warn,const char * fmt,...)454 _evdns_log(int warn, const char *fmt, ...)
455 {
456 	va_list args;
457 	char buf[512];
458 	if (!evdns_log_fn)
459 		return;
460 	va_start(args,fmt);
461 	evutil_vsnprintf(buf, sizeof(buf), fmt, args);
462 	va_end(args);
463 	if (evdns_log_fn) {
464 		if (warn == EVDNS_LOG_MSG)
465 			warn = EVDNS_LOG_WARN;
466 		evdns_log_fn(warn, buf);
467 	} else {
468 		default_evdns_log_fn(warn, buf);
469 	}
470 
471 }
472 
473 #define log _evdns_log
474 
475 /* This walks the list of inflight requests to find the */
476 /* one with a matching transaction id. Returns NULL on */
477 /* failure */
478 static struct request *
request_find_from_trans_id(struct evdns_base * base,u16 trans_id)479 request_find_from_trans_id(struct evdns_base *base, u16 trans_id) {
480 	struct request *req = REQ_HEAD(base, trans_id);
481 	struct request *const started_at = req;
482 
483 	ASSERT_LOCKED(base);
484 
485 	if (req) {
486 		do {
487 			if (req->trans_id == trans_id) return req;
488 			req = req->next;
489 		} while (req != started_at);
490 	}
491 
492 	return NULL;
493 }
494 
495 /* a libevent callback function which is called when a nameserver */
496 /* has gone down and we want to test if it has came back to life yet */
497 static void
nameserver_prod_callback(evutil_socket_t fd,short events,void * arg)498 nameserver_prod_callback(evutil_socket_t fd, short events, void *arg) {
499 	struct nameserver *const ns = (struct nameserver *) arg;
500 	(void)fd;
501 	(void)events;
502 
503 	EVDNS_LOCK(ns->base);
504 	nameserver_send_probe(ns);
505 	EVDNS_UNLOCK(ns->base);
506 }
507 
508 /* a libevent callback which is called when a nameserver probe (to see if */
509 /* it has come back to life) times out. We increment the count of failed_times */
510 /* and wait longer to send the next probe packet. */
511 static void
nameserver_probe_failed(struct nameserver * const ns)512 nameserver_probe_failed(struct nameserver *const ns) {
513 	struct timeval timeout;
514 	int i;
515 
516 	ASSERT_LOCKED(ns->base);
517 	(void) evtimer_del(&ns->timeout_event);
518 	if (ns->state == 1) {
519 		/* This can happen if the nameserver acts in a way which makes us mark */
520 		/* it as bad and then starts sending good replies. */
521 		return;
522 	}
523 
524 #define MAX_PROBE_TIMEOUT 3600
525 #define TIMEOUT_BACKOFF_FACTOR 3
526 
527 	memcpy(&timeout, &ns->base->global_nameserver_probe_initial_timeout,
528 	    sizeof(struct timeval));
529 	for (i=ns->failed_times; i > 0 && timeout.tv_sec < MAX_PROBE_TIMEOUT; --i) {
530 		timeout.tv_sec *= TIMEOUT_BACKOFF_FACTOR;
531 		timeout.tv_usec *= TIMEOUT_BACKOFF_FACTOR;
532 		if (timeout.tv_usec > 1000000) {
533 			timeout.tv_sec += timeout.tv_usec / 1000000;
534 			timeout.tv_usec %= 1000000;
535 		}
536 	}
537 	if (timeout.tv_sec > MAX_PROBE_TIMEOUT) {
538 		timeout.tv_sec = MAX_PROBE_TIMEOUT;
539 		timeout.tv_usec = 0;
540 	}
541 
542 	ns->failed_times++;
543 
544 	if (evtimer_add(&ns->timeout_event, &timeout) < 0) {
545 		char addrbuf[128];
546 		log(EVDNS_LOG_WARN,
547 		    "Error from libevent when adding timer event for %s",
548 		    evutil_format_sockaddr_port(
549 			    (struct sockaddr *)&ns->address,
550 			    addrbuf, sizeof(addrbuf)));
551 	}
552 }
553 
554 /* called when a nameserver has been deemed to have failed. For example, too */
555 /* many packets have timed out etc */
556 static void
nameserver_failed(struct nameserver * const ns,const char * msg)557 nameserver_failed(struct nameserver *const ns, const char *msg) {
558 	struct request *req, *started_at;
559 	struct evdns_base *base = ns->base;
560 	int i;
561 	char addrbuf[128];
562 
563 	ASSERT_LOCKED(base);
564 	/* if this nameserver has already been marked as failed */
565 	/* then don't do anything */
566 	if (!ns->state) return;
567 
568 	log(EVDNS_LOG_MSG, "Nameserver %s has failed: %s",
569 	    evutil_format_sockaddr_port(
570 		    (struct sockaddr *)&ns->address,
571 		    addrbuf, sizeof(addrbuf)),
572 	    msg);
573 
574 	base->global_good_nameservers--;
575 	EVUTIL_ASSERT(base->global_good_nameservers >= 0);
576 	if (base->global_good_nameservers == 0) {
577 		log(EVDNS_LOG_MSG, "All nameservers have failed");
578 	}
579 
580 	ns->state = 0;
581 	ns->failed_times = 1;
582 
583 	if (evtimer_add(&ns->timeout_event,
584 		&base->global_nameserver_probe_initial_timeout) < 0) {
585 		log(EVDNS_LOG_WARN,
586 		    "Error from libevent when adding timer event for %s",
587 		    evutil_format_sockaddr_port(
588 			    (struct sockaddr *)&ns->address,
589 			    addrbuf, sizeof(addrbuf)));
590 		/* ???? Do more? */
591 	}
592 
593 	/* walk the list of inflight requests to see if any can be reassigned to */
594 	/* a different server. Requests in the waiting queue don't have a */
595 	/* nameserver assigned yet */
596 
597 	/* if we don't have *any* good nameservers then there's no point */
598 	/* trying to reassign requests to one */
599 	if (!base->global_good_nameservers) return;
600 
601 	for (i = 0; i < base->n_req_heads; ++i) {
602 		req = started_at = base->req_heads[i];
603 		if (req) {
604 			do {
605 				if (req->tx_count == 0 && req->ns == ns) {
606 					/* still waiting to go out, can be moved */
607 					/* to another server */
608 					req->ns = nameserver_pick(base);
609 				}
610 				req = req->next;
611 			} while (req != started_at);
612 		}
613 	}
614 }
615 
616 static void
nameserver_up(struct nameserver * const ns)617 nameserver_up(struct nameserver *const ns)
618 {
619 	char addrbuf[128];
620 	ASSERT_LOCKED(ns->base);
621 	if (ns->state) return;
622 	log(EVDNS_LOG_MSG, "Nameserver %s is back up",
623 	    evutil_format_sockaddr_port(
624 		    (struct sockaddr *)&ns->address,
625 		    addrbuf, sizeof(addrbuf)));
626 	evtimer_del(&ns->timeout_event);
627 	if (ns->probe_request) {
628 		evdns_cancel_request(ns->base, ns->probe_request);
629 		ns->probe_request = NULL;
630 	}
631 	ns->state = 1;
632 	ns->failed_times = 0;
633 	ns->timedout = 0;
634 	ns->base->global_good_nameservers++;
635 }
636 
637 static void
request_trans_id_set(struct request * const req,const u16 trans_id)638 request_trans_id_set(struct request *const req, const u16 trans_id) {
639 	req->trans_id = trans_id;
640 	*((u16 *) req->request) = htons(trans_id);
641 }
642 
643 /* Called to remove a request from a list and dealloc it. */
644 /* head is a pointer to the head of the list it should be */
645 /* removed from or NULL if the request isn't in a list. */
646 /* when free_handle is one, free the handle as well. */
647 static void
request_finished(struct request * const req,struct request ** head,int free_handle)648 request_finished(struct request *const req, struct request **head, int free_handle) {
649 	struct evdns_base *base = req->base;
650 	int was_inflight = (head != &base->req_waiting_head);
651 	EVDNS_LOCK(base);
652 	ASSERT_VALID_REQUEST(req);
653 
654 	if (head)
655 		evdns_request_remove(req, head);
656 
657 	log(EVDNS_LOG_DEBUG, "Removing timeout for request %p", req);
658 	if (was_inflight) {
659 		evtimer_del(&req->timeout_event);
660 		base->global_requests_inflight--;
661 	} else {
662 		base->global_requests_waiting--;
663 	}
664 	/* it was initialized during request_new / evtimer_assign */
665 	event_debug_unassign(&req->timeout_event);
666 
667 	if (!req->request_appended) {
668 		/* need to free the request data on it's own */
669 		mm_free(req->request);
670 	} else {
671 		/* the request data is appended onto the header */
672 		/* so everything gets free()ed when we: */
673 	}
674 
675 	if (req->handle) {
676 		EVUTIL_ASSERT(req->handle->current_req == req);
677 
678 		if (free_handle) {
679 			search_request_finished(req->handle);
680 			req->handle->current_req = NULL;
681 			if (! req->handle->pending_cb) {
682 				/* If we're planning to run the callback,
683 				 * don't free the handle until later. */
684 				mm_free(req->handle);
685 			}
686 			req->handle = NULL; /* If we have a bug, let's crash
687 					     * early */
688 		} else {
689 			req->handle->current_req = NULL;
690 		}
691 	}
692 
693 	mm_free(req);
694 
695 	evdns_requests_pump_waiting_queue(base);
696 	EVDNS_UNLOCK(base);
697 }
698 
699 /* This is called when a server returns a funny error code. */
700 /* We try the request again with another server. */
701 /* */
702 /* return: */
703 /*   0 ok */
704 /*   1 failed/reissue is pointless */
705 static int
request_reissue(struct request * req)706 request_reissue(struct request *req) {
707 	const struct nameserver *const last_ns = req->ns;
708 	ASSERT_LOCKED(req->base);
709 	ASSERT_VALID_REQUEST(req);
710 	/* the last nameserver should have been marked as failing */
711 	/* by the caller of this function, therefore pick will try */
712 	/* not to return it */
713 	req->ns = nameserver_pick(req->base);
714 	if (req->ns == last_ns) {
715 		/* ... but pick did return it */
716 		/* not a lot of point in trying again with the */
717 		/* same server */
718 		return 1;
719 	}
720 
721 	req->reissue_count++;
722 	req->tx_count = 0;
723 	req->transmit_me = 1;
724 
725 	return 0;
726 }
727 
728 /* this function looks for space on the inflight queue and promotes */
729 /* requests from the waiting queue if it can. */
730 static void
evdns_requests_pump_waiting_queue(struct evdns_base * base)731 evdns_requests_pump_waiting_queue(struct evdns_base *base) {
732 	ASSERT_LOCKED(base);
733 	while (base->global_requests_inflight < base->global_max_requests_inflight &&
734 		   base->global_requests_waiting) {
735 		struct request *req;
736 		/* move a request from the waiting queue to the inflight queue */
737 		EVUTIL_ASSERT(base->req_waiting_head);
738 		req = base->req_waiting_head;
739 		evdns_request_remove(req, &base->req_waiting_head);
740 
741 		base->global_requests_waiting--;
742 		base->global_requests_inflight++;
743 
744 		req->ns = nameserver_pick(base);
745 		request_trans_id_set(req, transaction_id_pick(base));
746 
747 		evdns_request_insert(req, &REQ_HEAD(base, req->trans_id));
748 		evdns_request_transmit(req);
749 		evdns_transmit(base);
750 	}
751 }
752 
753 /* TODO(nickm) document */
754 struct deferred_reply_callback {
755 	struct deferred_cb deferred;
756 	struct evdns_request *handle;
757 	u8 request_type;
758 	u8 have_reply;
759 	u32 ttl;
760 	u32 err;
761 	evdns_callback_type user_callback;
762 	struct reply reply;
763 };
764 
765 static void
reply_run_callback(struct deferred_cb * d,void * user_pointer)766 reply_run_callback(struct deferred_cb *d, void *user_pointer)
767 {
768 	struct deferred_reply_callback *cb =
769 	    EVUTIL_UPCAST(d, struct deferred_reply_callback, deferred);
770 
771 	switch (cb->request_type) {
772 	case TYPE_A:
773 		if (cb->have_reply)
774 			cb->user_callback(DNS_ERR_NONE, DNS_IPv4_A,
775 			    cb->reply.data.a.addrcount, cb->ttl,
776 			    cb->reply.data.a.addresses,
777 			    user_pointer);
778 		else
779 			cb->user_callback(cb->err, 0, 0, cb->ttl, NULL, user_pointer);
780 		break;
781 	case TYPE_PTR:
782 		if (cb->have_reply) {
783 			char *name = cb->reply.data.ptr.name;
784 			cb->user_callback(DNS_ERR_NONE, DNS_PTR, 1, cb->ttl,
785 			    &name, user_pointer);
786 		} else {
787 			cb->user_callback(cb->err, 0, 0, cb->ttl, NULL, user_pointer);
788 		}
789 		break;
790 	case TYPE_AAAA:
791 		if (cb->have_reply)
792 			cb->user_callback(DNS_ERR_NONE, DNS_IPv6_AAAA,
793 			    cb->reply.data.aaaa.addrcount, cb->ttl,
794 			    cb->reply.data.aaaa.addresses,
795 			    user_pointer);
796 		else
797 			cb->user_callback(cb->err, 0, 0, cb->ttl, NULL, user_pointer);
798 		break;
799 	default:
800 		EVUTIL_ASSERT(0);
801 	}
802 
803 	if (cb->handle && cb->handle->pending_cb) {
804 		mm_free(cb->handle);
805 	}
806 
807 	mm_free(cb);
808 }
809 
810 static void
reply_schedule_callback(struct request * const req,u32 ttl,u32 err,struct reply * reply)811 reply_schedule_callback(struct request *const req, u32 ttl, u32 err, struct reply *reply)
812 {
813 	struct deferred_reply_callback *d = mm_calloc(1, sizeof(*d));
814 
815 	if (!d) {
816 		event_warn("%s: Couldn't allocate space for deferred callback.",
817 		    __func__);
818 		return;
819 	}
820 
821 	ASSERT_LOCKED(req->base);
822 
823 	d->request_type = req->request_type;
824 	d->user_callback = req->user_callback;
825 	d->ttl = ttl;
826 	d->err = err;
827 	if (reply) {
828 		d->have_reply = 1;
829 		memcpy(&d->reply, reply, sizeof(struct reply));
830 	}
831 
832 	if (req->handle) {
833 		req->handle->pending_cb = 1;
834 		d->handle = req->handle;
835 	}
836 
837 	event_deferred_cb_init(&d->deferred, reply_run_callback,
838 	    req->user_pointer);
839 	event_deferred_cb_schedule(
840 		event_base_get_deferred_cb_queue(req->base->event_base),
841 		&d->deferred);
842 }
843 
844 /* this processes a parsed reply packet */
845 static void
reply_handle(struct request * const req,u16 flags,u32 ttl,struct reply * reply)846 reply_handle(struct request *const req, u16 flags, u32 ttl, struct reply *reply) {
847 	int error;
848 	char addrbuf[128];
849 	static const int error_codes[] = {
850 		DNS_ERR_FORMAT, DNS_ERR_SERVERFAILED, DNS_ERR_NOTEXIST,
851 		DNS_ERR_NOTIMPL, DNS_ERR_REFUSED
852 	};
853 
854 	ASSERT_LOCKED(req->base);
855 	ASSERT_VALID_REQUEST(req);
856 
857 	if (flags & 0x020f || !reply || !reply->have_answer) {
858 		/* there was an error */
859 		if (flags & 0x0200) {
860 			error = DNS_ERR_TRUNCATED;
861 		} else if (flags & 0x000f) {
862 			u16 error_code = (flags & 0x000f) - 1;
863 			if (error_code > 4) {
864 				error = DNS_ERR_UNKNOWN;
865 			} else {
866 				error = error_codes[error_code];
867 			}
868 		} else if (reply && !reply->have_answer) {
869 			error = DNS_ERR_NODATA;
870 		} else {
871 			error = DNS_ERR_UNKNOWN;
872 		}
873 
874 		switch (error) {
875 		case DNS_ERR_NOTIMPL:
876 		case DNS_ERR_REFUSED:
877 			/* we regard these errors as marking a bad nameserver */
878 			if (req->reissue_count < req->base->global_max_reissues) {
879 				char msg[64];
880 				evutil_snprintf(msg, sizeof(msg), "Bad response %d (%s)",
881 					 error, evdns_err_to_string(error));
882 				nameserver_failed(req->ns, msg);
883 				if (!request_reissue(req)) return;
884 			}
885 			break;
886 		case DNS_ERR_SERVERFAILED:
887 			/* rcode 2 (servfailed) sometimes means "we
888 			 * are broken" and sometimes (with some binds)
889 			 * means "that request was very confusing."
890 			 * Treat this as a timeout, not a failure.
891 			 */
892 			log(EVDNS_LOG_DEBUG, "Got a SERVERFAILED from nameserver"
893 				"at %s; will allow the request to time out.",
894 			    evutil_format_sockaddr_port(
895 				    (struct sockaddr *)&req->ns->address,
896 				    addrbuf, sizeof(addrbuf)));
897 			break;
898 		default:
899 			/* we got a good reply from the nameserver: it is up. */
900 			if (req->handle == req->ns->probe_request) {
901 				/* Avoid double-free */
902 				req->ns->probe_request = NULL;
903 			}
904 
905 			nameserver_up(req->ns);
906 		}
907 
908 		if (req->handle->search_state &&
909 		    req->request_type != TYPE_PTR) {
910 			/* if we have a list of domains to search in,
911 			 * try the next one */
912 			if (!search_try_next(req->handle)) {
913 				/* a new request was issued so this
914 				 * request is finished and */
915 				/* the user callback will be made when
916 				 * that request (or a */
917 				/* child of it) finishes. */
918 				return;
919 			}
920 		}
921 
922 		/* all else failed. Pass the failure up */
923 		reply_schedule_callback(req, ttl, error, NULL);
924 		request_finished(req, &REQ_HEAD(req->base, req->trans_id), 1);
925 	} else {
926 		/* all ok, tell the user */
927 		reply_schedule_callback(req, ttl, 0, reply);
928 		if (req->handle == req->ns->probe_request)
929 			req->ns->probe_request = NULL; /* Avoid double-free */
930 		nameserver_up(req->ns);
931 		request_finished(req, &REQ_HEAD(req->base, req->trans_id), 1);
932 	}
933 }
934 
935 static int
name_parse(u8 * packet,int length,int * idx,char * name_out,int name_out_len)936 name_parse(u8 *packet, int length, int *idx, char *name_out, int name_out_len) {
937 	int name_end = -1;
938 	int j = *idx;
939 	int ptr_count = 0;
940 #define GET32(x) do { if (j + 4 > length) goto err; memcpy(&_t32, packet + j, 4); j += 4; x = ntohl(_t32); } while (0)
941 #define GET16(x) do { if (j + 2 > length) goto err; memcpy(&_t, packet + j, 2); j += 2; x = ntohs(_t); } while (0)
942 #define GET8(x) do { if (j >= length) goto err; x = packet[j++]; } while (0)
943 
944 	char *cp = name_out;
945 	const char *const end = name_out + name_out_len;
946 
947 	/* Normally, names are a series of length prefixed strings terminated */
948 	/* with a length of 0 (the lengths are u8's < 63). */
949 	/* However, the length can start with a pair of 1 bits and that */
950 	/* means that the next 14 bits are a pointer within the current */
951 	/* packet. */
952 
953 	for (;;) {
954 		u8 label_len;
955 		if (j >= length) return -1;
956 		GET8(label_len);
957 		if (!label_len) break;
958 		if (label_len & 0xc0) {
959 			u8 ptr_low;
960 			GET8(ptr_low);
961 			if (name_end < 0) name_end = j;
962 			j = (((int)label_len & 0x3f) << 8) + ptr_low;
963 			/* Make sure that the target offset is in-bounds. */
964 			if (j < 0 || j >= length) return -1;
965 			/* If we've jumped more times than there are characters in the
966 			 * message, we must have a loop. */
967 			if (++ptr_count > length) return -1;
968 			continue;
969 		}
970 		if (label_len > 63) return -1;
971 		if (cp != name_out) {
972 			if (cp + 1 >= end) return -1;
973 			*cp++ = '.';
974 		}
975 		if (cp + label_len >= end) return -1;
976 		memcpy(cp, packet + j, label_len);
977 		cp += label_len;
978 		j += label_len;
979 	}
980 	if (cp >= end) return -1;
981 	*cp = '\0';
982 	if (name_end < 0)
983 		*idx = j;
984 	else
985 		*idx = name_end;
986 	return 0;
987  err:
988 	return -1;
989 }
990 
991 /* parses a raw request from a nameserver */
992 static int
reply_parse(struct evdns_base * base,u8 * packet,int length)993 reply_parse(struct evdns_base *base, u8 *packet, int length) {
994 	int j = 0, k = 0;  /* index into packet */
995 	u16 _t;	 /* used by the macros */
996 	u32 _t32;  /* used by the macros */
997 	char tmp_name[256], cmp_name[256]; /* used by the macros */
998 	int name_matches = 0;
999 
1000 	u16 trans_id, questions, answers, authority, additional, datalength;
1001 	u16 flags = 0;
1002 	u32 ttl, ttl_r = 0xffffffff;
1003 	struct reply reply;
1004 	struct request *req = NULL;
1005 	unsigned int i;
1006 
1007 	ASSERT_LOCKED(base);
1008 
1009 	GET16(trans_id);
1010 	GET16(flags);
1011 	GET16(questions);
1012 	GET16(answers);
1013 	GET16(authority);
1014 	GET16(additional);
1015 	(void) authority; /* suppress "unused variable" warnings. */
1016 	(void) additional; /* suppress "unused variable" warnings. */
1017 
1018 	req = request_find_from_trans_id(base, trans_id);
1019 	if (!req) return -1;
1020 	EVUTIL_ASSERT(req->base == base);
1021 
1022 	memset(&reply, 0, sizeof(reply));
1023 
1024 	/* If it's not an answer, it doesn't correspond to any request. */
1025 	if (!(flags & 0x8000)) return -1;  /* must be an answer */
1026 	if ((flags & 0x020f) && (flags & 0x020f) != DNS_ERR_NOTEXIST) {
1027 		/* there was an error and it's not NXDOMAIN */
1028 		goto err;
1029 	}
1030 	/* if (!answers) return; */  /* must have an answer of some form */
1031 
1032 	/* This macro skips a name in the DNS reply. */
1033 #define SKIP_NAME						\
1034 	do { tmp_name[0] = '\0';				\
1035 		if (name_parse(packet, length, &j, tmp_name,	\
1036 			sizeof(tmp_name))<0)			\
1037 			goto err;				\
1038 	} while (0)
1039 #define TEST_NAME							\
1040 	do { tmp_name[0] = '\0';					\
1041 		cmp_name[0] = '\0';					\
1042 		k = j;							\
1043 		if (name_parse(packet, length, &j, tmp_name,		\
1044 			sizeof(tmp_name))<0)				\
1045 			goto err;					\
1046 		if (name_parse(req->request, req->request_len, &k,	\
1047 			cmp_name, sizeof(cmp_name))<0)			\
1048 			goto err;					\
1049 		if (base->global_randomize_case) {			\
1050 			if (strcmp(tmp_name, cmp_name) == 0)		\
1051 				name_matches = 1;			\
1052 		} else {						\
1053 			if (evutil_ascii_strcasecmp(tmp_name, cmp_name) == 0) \
1054 				name_matches = 1;			\
1055 		}							\
1056 	} while (0)
1057 
1058 	reply.type = req->request_type;
1059 
1060 	/* skip over each question in the reply */
1061 	for (i = 0; i < questions; ++i) {
1062 		/* the question looks like
1063 		 *   <label:name><u16:type><u16:class>
1064 		 */
1065 		TEST_NAME;
1066 		j += 4;
1067 		if (j > length) goto err;
1068 	}
1069 
1070 	if (!name_matches)
1071 		goto err;
1072 
1073 	/* now we have the answer section which looks like
1074 	 * <label:name><u16:type><u16:class><u32:ttl><u16:len><data...>
1075 	 */
1076 
1077 	for (i = 0; i < answers; ++i) {
1078 		u16 type, class;
1079 
1080 		SKIP_NAME;
1081 		GET16(type);
1082 		GET16(class);
1083 		GET32(ttl);
1084 		GET16(datalength);
1085 
1086 		if (type == TYPE_A && class == CLASS_INET) {
1087 			int addrcount, addrtocopy;
1088 			if (req->request_type != TYPE_A) {
1089 				j += datalength; continue;
1090 			}
1091 			if ((datalength & 3) != 0) /* not an even number of As. */
1092 			    goto err;
1093 			addrcount = datalength >> 2;
1094 			addrtocopy = MIN(MAX_V4_ADDRS - reply.data.a.addrcount, (unsigned)addrcount);
1095 
1096 			ttl_r = MIN(ttl_r, ttl);
1097 			/* we only bother with the first four addresses. */
1098 			if (j + 4*addrtocopy > length) goto err;
1099 			memcpy(&reply.data.a.addresses[reply.data.a.addrcount],
1100 				   packet + j, 4*addrtocopy);
1101 			j += 4*addrtocopy;
1102 			reply.data.a.addrcount += addrtocopy;
1103 			reply.have_answer = 1;
1104 			if (reply.data.a.addrcount == MAX_V4_ADDRS) break;
1105 		} else if (type == TYPE_PTR && class == CLASS_INET) {
1106 			if (req->request_type != TYPE_PTR) {
1107 				j += datalength; continue;
1108 			}
1109 			if (name_parse(packet, length, &j, reply.data.ptr.name,
1110 						   sizeof(reply.data.ptr.name))<0)
1111 				goto err;
1112 			ttl_r = MIN(ttl_r, ttl);
1113 			reply.have_answer = 1;
1114 			break;
1115 		} else if (type == TYPE_CNAME) {
1116 			char cname[HOST_NAME_MAX];
1117 			if (!req->put_cname_in_ptr || *req->put_cname_in_ptr) {
1118 				j += datalength; continue;
1119 			}
1120 			if (name_parse(packet, length, &j, cname,
1121 				sizeof(cname))<0)
1122 				goto err;
1123 			*req->put_cname_in_ptr = mm_strdup(cname);
1124 		} else if (type == TYPE_AAAA && class == CLASS_INET) {
1125 			int addrcount, addrtocopy;
1126 			if (req->request_type != TYPE_AAAA) {
1127 				j += datalength; continue;
1128 			}
1129 			if ((datalength & 15) != 0) /* not an even number of AAAAs. */
1130 				goto err;
1131 			addrcount = datalength >> 4;  /* each address is 16 bytes long */
1132 			addrtocopy = MIN(MAX_V6_ADDRS - reply.data.aaaa.addrcount, (unsigned)addrcount);
1133 			ttl_r = MIN(ttl_r, ttl);
1134 
1135 			/* we only bother with the first four addresses. */
1136 			if (j + 16*addrtocopy > length) goto err;
1137 			memcpy(&reply.data.aaaa.addresses[reply.data.aaaa.addrcount],
1138 				   packet + j, 16*addrtocopy);
1139 			reply.data.aaaa.addrcount += addrtocopy;
1140 			j += 16*addrtocopy;
1141 			reply.have_answer = 1;
1142 			if (reply.data.aaaa.addrcount == MAX_V6_ADDRS) break;
1143 		} else {
1144 			/* skip over any other type of resource */
1145 			j += datalength;
1146 		}
1147 	}
1148 
1149 	if (!reply.have_answer) {
1150 		for (i = 0; i < authority; ++i) {
1151 			u16 type, class;
1152 			SKIP_NAME;
1153 			GET16(type);
1154 			GET16(class);
1155 			GET32(ttl);
1156 			GET16(datalength);
1157 			if (type == TYPE_SOA && class == CLASS_INET) {
1158 				u32 serial, refresh, retry, expire, minimum;
1159 				SKIP_NAME;
1160 				SKIP_NAME;
1161 				GET32(serial);
1162 				GET32(refresh);
1163 				GET32(retry);
1164 				GET32(expire);
1165 				GET32(minimum);
1166 				(void)expire;
1167 				(void)retry;
1168 				(void)refresh;
1169 				(void)serial;
1170 				ttl_r = MIN(ttl_r, ttl);
1171 				ttl_r = MIN(ttl_r, minimum);
1172 			} else {
1173 				/* skip over any other type of resource */
1174 				j += datalength;
1175 			}
1176 		}
1177 	}
1178 
1179 	if (ttl_r == 0xffffffff)
1180 		ttl_r = 0;
1181 
1182 	reply_handle(req, flags, ttl_r, &reply);
1183 	return 0;
1184  err:
1185 	if (req)
1186 		reply_handle(req, flags, 0, NULL);
1187 	return -1;
1188 }
1189 
1190 /* Parse a raw request (packet,length) sent to a nameserver port (port) from */
1191 /* a DNS client (addr,addrlen), and if it's well-formed, call the corresponding */
1192 /* callback. */
1193 static int
request_parse(u8 * packet,int length,struct evdns_server_port * port,struct sockaddr * addr,ev_socklen_t addrlen)1194 request_parse(u8 *packet, int length, struct evdns_server_port *port, struct sockaddr *addr, ev_socklen_t addrlen)
1195 {
1196 	int j = 0;	/* index into packet */
1197 	u16 _t;	 /* used by the macros */
1198 	char tmp_name[256]; /* used by the macros */
1199 
1200 	int i;
1201 	u16 trans_id, flags, questions, answers, authority, additional;
1202 	struct server_request *server_req = NULL;
1203 
1204 	ASSERT_LOCKED(port);
1205 
1206 	/* Get the header fields */
1207 	GET16(trans_id);
1208 	GET16(flags);
1209 	GET16(questions);
1210 	GET16(answers);
1211 	GET16(authority);
1212 	GET16(additional);
1213 	(void)answers;
1214 	(void)additional;
1215 	(void)authority;
1216 
1217 	if (flags & 0x8000) return -1; /* Must not be an answer. */
1218 	flags &= 0x0110; /* Only RD and CD get preserved. */
1219 
1220 	server_req = mm_malloc(sizeof(struct server_request));
1221 	if (server_req == NULL) return -1;
1222 	memset(server_req, 0, sizeof(struct server_request));
1223 
1224 	server_req->trans_id = trans_id;
1225 	memcpy(&server_req->addr, addr, addrlen);
1226 	server_req->addrlen = addrlen;
1227 
1228 	server_req->base.flags = flags;
1229 	server_req->base.nquestions = 0;
1230 	server_req->base.questions = mm_calloc(sizeof(struct evdns_server_question *), questions);
1231 	if (server_req->base.questions == NULL)
1232 		goto err;
1233 
1234 	for (i = 0; i < questions; ++i) {
1235 		u16 type, class;
1236 		struct evdns_server_question *q;
1237 		int namelen;
1238 		if (name_parse(packet, length, &j, tmp_name, sizeof(tmp_name))<0)
1239 			goto err;
1240 		GET16(type);
1241 		GET16(class);
1242 		namelen = (int)strlen(tmp_name);
1243 		q = mm_malloc(sizeof(struct evdns_server_question) + namelen);
1244 		if (!q)
1245 			goto err;
1246 		q->type = type;
1247 		q->dns_question_class = class;
1248 		memcpy(q->name, tmp_name, namelen+1);
1249 		server_req->base.questions[server_req->base.nquestions++] = q;
1250 	}
1251 
1252 	/* Ignore answers, authority, and additional. */
1253 
1254 	server_req->port = port;
1255 	port->refcnt++;
1256 
1257 	/* Only standard queries are supported. */
1258 	if (flags & 0x7800) {
1259 		evdns_server_request_respond(&(server_req->base), DNS_ERR_NOTIMPL);
1260 		return -1;
1261 	}
1262 
1263 	port->user_callback(&(server_req->base), port->user_data);
1264 
1265 	return 0;
1266 err:
1267 	if (server_req) {
1268 		if (server_req->base.questions) {
1269 			for (i = 0; i < server_req->base.nquestions; ++i)
1270 				mm_free(server_req->base.questions[i]);
1271 			mm_free(server_req->base.questions);
1272 		}
1273 		mm_free(server_req);
1274 	}
1275 	return -1;
1276 
1277 #undef SKIP_NAME
1278 #undef GET32
1279 #undef GET16
1280 #undef GET8
1281 }
1282 
1283 
1284 void
evdns_set_transaction_id_fn(ev_uint16_t (* fn)(void))1285 evdns_set_transaction_id_fn(ev_uint16_t (*fn)(void))
1286 {
1287 }
1288 
1289 void
evdns_set_random_bytes_fn(void (* fn)(char *,size_t))1290 evdns_set_random_bytes_fn(void (*fn)(char *, size_t))
1291 {
1292 }
1293 
1294 /* Try to choose a strong transaction id which isn't already in flight */
1295 static u16
transaction_id_pick(struct evdns_base * base)1296 transaction_id_pick(struct evdns_base *base) {
1297 	ASSERT_LOCKED(base);
1298 	for (;;) {
1299 		u16 trans_id;
1300 		evutil_secure_rng_get_bytes(&trans_id, sizeof(trans_id));
1301 
1302 		if (trans_id == 0xffff) continue;
1303 		/* now check to see if that id is already inflight */
1304 		if (request_find_from_trans_id(base, trans_id) == NULL)
1305 			return trans_id;
1306 	}
1307 }
1308 
1309 /* choose a namesever to use. This function will try to ignore */
1310 /* nameservers which we think are down and load balance across the rest */
1311 /* by updating the server_head global each time. */
1312 static struct nameserver *
nameserver_pick(struct evdns_base * base)1313 nameserver_pick(struct evdns_base *base) {
1314 	struct nameserver *started_at = base->server_head, *picked;
1315 	ASSERT_LOCKED(base);
1316 	if (!base->server_head) return NULL;
1317 
1318 	/* if we don't have any good nameservers then there's no */
1319 	/* point in trying to find one. */
1320 	if (!base->global_good_nameservers) {
1321 		base->server_head = base->server_head->next;
1322 		return base->server_head;
1323 	}
1324 
1325 	/* remember that nameservers are in a circular list */
1326 	for (;;) {
1327 		if (base->server_head->state) {
1328 			/* we think this server is currently good */
1329 			picked = base->server_head;
1330 			base->server_head = base->server_head->next;
1331 			return picked;
1332 		}
1333 
1334 		base->server_head = base->server_head->next;
1335 		if (base->server_head == started_at) {
1336 			/* all the nameservers seem to be down */
1337 			/* so we just return this one and hope for the */
1338 			/* best */
1339 			EVUTIL_ASSERT(base->global_good_nameservers == 0);
1340 			picked = base->server_head;
1341 			base->server_head = base->server_head->next;
1342 			return picked;
1343 		}
1344 	}
1345 }
1346 
1347 /* this is called when a namesever socket is ready for reading */
1348 static void
nameserver_read(struct nameserver * ns)1349 nameserver_read(struct nameserver *ns) {
1350 	struct sockaddr_storage ss;
1351 	ev_socklen_t addrlen = sizeof(ss);
1352 	u8 packet[1500];
1353 	char addrbuf[128];
1354 	ASSERT_LOCKED(ns->base);
1355 
1356 	for (;;) {
1357 		const int r = recvfrom(ns->socket, (void*)packet,
1358 		    sizeof(packet), 0,
1359 		    (struct sockaddr*)&ss, &addrlen);
1360 		if (r < 0) {
1361 			int err = evutil_socket_geterror(ns->socket);
1362 			if (EVUTIL_ERR_RW_RETRIABLE(err))
1363 				return;
1364 			nameserver_failed(ns,
1365 			    evutil_socket_error_to_string(err));
1366 			return;
1367 		}
1368 		if (evutil_sockaddr_cmp((struct sockaddr*)&ss,
1369 			(struct sockaddr*)&ns->address, 0)) {
1370 			log(EVDNS_LOG_WARN, "Address mismatch on received "
1371 			    "DNS packet.  Apparent source was %s",
1372 			    evutil_format_sockaddr_port(
1373 				    (struct sockaddr *)&ss,
1374 				    addrbuf, sizeof(addrbuf)));
1375 			return;
1376 		}
1377 
1378 		ns->timedout = 0;
1379 		reply_parse(ns->base, packet, r);
1380 	}
1381 }
1382 
1383 /* Read a packet from a DNS client on a server port s, parse it, and */
1384 /* act accordingly. */
1385 static void
server_port_read(struct evdns_server_port * s)1386 server_port_read(struct evdns_server_port *s) {
1387 	u8 packet[1500];
1388 	struct sockaddr_storage addr;
1389 	ev_socklen_t addrlen;
1390 	int r;
1391 	ASSERT_LOCKED(s);
1392 
1393 	for (;;) {
1394 		addrlen = sizeof(struct sockaddr_storage);
1395 		r = recvfrom(s->socket, (void*)packet, sizeof(packet), 0,
1396 					 (struct sockaddr*) &addr, &addrlen);
1397 		if (r < 0) {
1398 			int err = evutil_socket_geterror(s->socket);
1399 			if (EVUTIL_ERR_RW_RETRIABLE(err))
1400 				return;
1401 			log(EVDNS_LOG_WARN,
1402 			    "Error %s (%d) while reading request.",
1403 			    evutil_socket_error_to_string(err), err);
1404 			return;
1405 		}
1406 		request_parse(packet, r, s, (struct sockaddr*) &addr, addrlen);
1407 	}
1408 }
1409 
1410 /* Try to write all pending replies on a given DNS server port. */
1411 static void
server_port_flush(struct evdns_server_port * port)1412 server_port_flush(struct evdns_server_port *port)
1413 {
1414 	struct server_request *req = port->pending_replies;
1415 	ASSERT_LOCKED(port);
1416 	while (req) {
1417 		int r = sendto(port->socket, req->response, (int)req->response_len, 0,
1418 			   (struct sockaddr*) &req->addr, (ev_socklen_t)req->addrlen);
1419 		if (r < 0) {
1420 			int err = evutil_socket_geterror(port->socket);
1421 			if (EVUTIL_ERR_RW_RETRIABLE(err))
1422 				return;
1423 			log(EVDNS_LOG_WARN, "Error %s (%d) while writing response to port; dropping", evutil_socket_error_to_string(err), err);
1424 		}
1425 		if (server_request_free(req)) {
1426 			/* we released the last reference to req->port. */
1427 			return;
1428 		} else {
1429 			EVUTIL_ASSERT(req != port->pending_replies);
1430 			req = port->pending_replies;
1431 		}
1432 	}
1433 
1434 	/* We have no more pending requests; stop listening for 'writeable' events. */
1435 	(void) event_del(&port->event);
1436 	event_assign(&port->event, port->event_base,
1437 				 port->socket, EV_READ | EV_PERSIST,
1438 				 server_port_ready_callback, port);
1439 
1440 	if (event_add(&port->event, NULL) < 0) {
1441 		log(EVDNS_LOG_WARN, "Error from libevent when adding event for DNS server.");
1442 		/* ???? Do more? */
1443 	}
1444 }
1445 
1446 /* set if we are waiting for the ability to write to this server. */
1447 /* if waiting is true then we ask libevent for EV_WRITE events, otherwise */
1448 /* we stop these events. */
1449 static void
nameserver_write_waiting(struct nameserver * ns,char waiting)1450 nameserver_write_waiting(struct nameserver *ns, char waiting) {
1451 	ASSERT_LOCKED(ns->base);
1452 	if (ns->write_waiting == waiting) return;
1453 
1454 	ns->write_waiting = waiting;
1455 	(void) event_del(&ns->event);
1456 	event_assign(&ns->event, ns->base->event_base,
1457 	    ns->socket, EV_READ | (waiting ? EV_WRITE : 0) | EV_PERSIST,
1458 	    nameserver_ready_callback, ns);
1459 	if (event_add(&ns->event, NULL) < 0) {
1460 		char addrbuf[128];
1461 		log(EVDNS_LOG_WARN, "Error from libevent when adding event for %s",
1462 		    evutil_format_sockaddr_port(
1463 			    (struct sockaddr *)&ns->address,
1464 			    addrbuf, sizeof(addrbuf)));
1465 		/* ???? Do more? */
1466 	}
1467 }
1468 
1469 /* a callback function. Called by libevent when the kernel says that */
1470 /* a nameserver socket is ready for writing or reading */
1471 static void
nameserver_ready_callback(evutil_socket_t fd,short events,void * arg)1472 nameserver_ready_callback(evutil_socket_t fd, short events, void *arg) {
1473 	struct nameserver *ns = (struct nameserver *) arg;
1474 	(void)fd;
1475 
1476 	EVDNS_LOCK(ns->base);
1477 	if (events & EV_WRITE) {
1478 		ns->choked = 0;
1479 		if (!evdns_transmit(ns->base)) {
1480 			nameserver_write_waiting(ns, 0);
1481 		}
1482 	}
1483 	if (events & EV_READ) {
1484 		nameserver_read(ns);
1485 	}
1486 	EVDNS_UNLOCK(ns->base);
1487 }
1488 
1489 /* a callback function. Called by libevent when the kernel says that */
1490 /* a server socket is ready for writing or reading. */
1491 static void
server_port_ready_callback(evutil_socket_t fd,short events,void * arg)1492 server_port_ready_callback(evutil_socket_t fd, short events, void *arg) {
1493 	struct evdns_server_port *port = (struct evdns_server_port *) arg;
1494 	(void) fd;
1495 
1496 	EVDNS_LOCK(port);
1497 	if (events & EV_WRITE) {
1498 		port->choked = 0;
1499 		server_port_flush(port);
1500 	}
1501 	if (events & EV_READ) {
1502 		server_port_read(port);
1503 	}
1504 	EVDNS_UNLOCK(port);
1505 }
1506 
1507 /* This is an inefficient representation; only use it via the dnslabel_table_*
1508  * functions, so that is can be safely replaced with something smarter later. */
1509 #define MAX_LABELS 128
1510 /* Structures used to implement name compression */
1511 struct dnslabel_entry { char *v; off_t pos; };
1512 struct dnslabel_table {
1513 	int n_labels; /* number of current entries */
1514 	/* map from name to position in message */
1515 	struct dnslabel_entry labels[MAX_LABELS];
1516 };
1517 
1518 /* Initialize dnslabel_table. */
1519 static void
dnslabel_table_init(struct dnslabel_table * table)1520 dnslabel_table_init(struct dnslabel_table *table)
1521 {
1522 	table->n_labels = 0;
1523 }
1524 
1525 /* Free all storage held by table, but not the table itself. */
1526 static void
dnslabel_clear(struct dnslabel_table * table)1527 dnslabel_clear(struct dnslabel_table *table)
1528 {
1529 	int i;
1530 	for (i = 0; i < table->n_labels; ++i)
1531 		mm_free(table->labels[i].v);
1532 	table->n_labels = 0;
1533 }
1534 
1535 /* return the position of the label in the current message, or -1 if the label */
1536 /* hasn't been used yet. */
1537 static int
dnslabel_table_get_pos(const struct dnslabel_table * table,const char * label)1538 dnslabel_table_get_pos(const struct dnslabel_table *table, const char *label)
1539 {
1540 	int i;
1541 	for (i = 0; i < table->n_labels; ++i) {
1542 		if (!strcmp(label, table->labels[i].v))
1543 			return table->labels[i].pos;
1544 	}
1545 	return -1;
1546 }
1547 
1548 /* remember that we've used the label at position pos */
1549 static int
dnslabel_table_add(struct dnslabel_table * table,const char * label,off_t pos)1550 dnslabel_table_add(struct dnslabel_table *table, const char *label, off_t pos)
1551 {
1552 	char *v;
1553 	int p;
1554 	if (table->n_labels == MAX_LABELS)
1555 		return (-1);
1556 	v = mm_strdup(label);
1557 	if (v == NULL)
1558 		return (-1);
1559 	p = table->n_labels++;
1560 	table->labels[p].v = v;
1561 	table->labels[p].pos = pos;
1562 
1563 	return (0);
1564 }
1565 
1566 /* Converts a string to a length-prefixed set of DNS labels, starting */
1567 /* at buf[j]. name and buf must not overlap. name_len should be the length */
1568 /* of name.	 table is optional, and is used for compression. */
1569 /* */
1570 /* Input: abc.def */
1571 /* Output: <3>abc<3>def<0> */
1572 /* */
1573 /* Returns the first index after the encoded name, or negative on error. */
1574 /*	 -1	 label was > 63 bytes */
1575 /*	 -2	 name too long to fit in buffer. */
1576 /* */
1577 static off_t
dnsname_to_labels(u8 * const buf,size_t buf_len,off_t j,const char * name,const size_t name_len,struct dnslabel_table * table)1578 dnsname_to_labels(u8 *const buf, size_t buf_len, off_t j,
1579 				  const char *name, const size_t name_len,
1580 				  struct dnslabel_table *table) {
1581 	const char *end = name + name_len;
1582 	int ref = 0;
1583 	u16 _t;
1584 
1585 #define APPEND16(x) do {						\
1586 		if (j + 2 > (off_t)buf_len)				\
1587 			goto overflow;					\
1588 		_t = htons(x);						\
1589 		memcpy(buf + j, &_t, 2);				\
1590 		j += 2;							\
1591 	} while (0)
1592 #define APPEND32(x) do {						\
1593 		if (j + 4 > (off_t)buf_len)				\
1594 			goto overflow;					\
1595 		_t32 = htonl(x);					\
1596 		memcpy(buf + j, &_t32, 4);				\
1597 		j += 4;							\
1598 	} while (0)
1599 
1600 	if (name_len > 255) return -2;
1601 
1602 	for (;;) {
1603 		const char *const start = name;
1604 		if (table && (ref = dnslabel_table_get_pos(table, name)) >= 0) {
1605 			APPEND16(ref | 0xc000);
1606 			return j;
1607 		}
1608 		name = strchr(name, '.');
1609 		if (!name) {
1610 			const size_t label_len = end - start;
1611 			if (label_len > 63) return -1;
1612 			if ((size_t)(j+label_len+1) > buf_len) return -2;
1613 			if (table) dnslabel_table_add(table, start, j);
1614 			buf[j++] = (ev_uint8_t)label_len;
1615 
1616 			memcpy(buf + j, start, label_len);
1617 			j += (int) label_len;
1618 			break;
1619 		} else {
1620 			/* append length of the label. */
1621 			const size_t label_len = name - start;
1622 			if (label_len > 63) return -1;
1623 			if ((size_t)(j+label_len+1) > buf_len) return -2;
1624 			if (table) dnslabel_table_add(table, start, j);
1625 			buf[j++] = (ev_uint8_t)label_len;
1626 
1627 			memcpy(buf + j, start, label_len);
1628 			j += (int) label_len;
1629 			/* hop over the '.' */
1630 			name++;
1631 		}
1632 	}
1633 
1634 	/* the labels must be terminated by a 0. */
1635 	/* It's possible that the name ended in a . */
1636 	/* in which case the zero is already there */
1637 	if (!j || buf[j-1]) buf[j++] = 0;
1638 	return j;
1639  overflow:
1640 	return (-2);
1641 }
1642 
1643 /* Finds the length of a dns request for a DNS name of the given */
1644 /* length. The actual request may be smaller than the value returned */
1645 /* here */
1646 static size_t
evdns_request_len(const size_t name_len)1647 evdns_request_len(const size_t name_len) {
1648 	return 96 + /* length of the DNS standard header */
1649 		name_len + 2 +
1650 		4;  /* space for the resource type */
1651 }
1652 
1653 /* build a dns request packet into buf. buf should be at least as long */
1654 /* as evdns_request_len told you it should be. */
1655 /* */
1656 /* Returns the amount of space used. Negative on error. */
1657 static int
evdns_request_data_build(const char * const name,const size_t name_len,const u16 trans_id,const u16 type,const u16 class,u8 * const buf,size_t buf_len)1658 evdns_request_data_build(const char *const name, const size_t name_len,
1659     const u16 trans_id, const u16 type, const u16 class,
1660     u8 *const buf, size_t buf_len) {
1661 	off_t j = 0;  /* current offset into buf */
1662 	u16 _t;	 /* used by the macros */
1663 
1664 	APPEND16(trans_id);
1665 	APPEND16(0x0100);  /* standard query, recusion needed */
1666 	APPEND16(1);  /* one question */
1667 	APPEND16(0);  /* no answers */
1668 	APPEND16(0);  /* no authority */
1669 	APPEND16(0);  /* no additional */
1670 
1671 	j = dnsname_to_labels(buf, buf_len, j, name, name_len, NULL);
1672 	if (j < 0) {
1673 		return (int)j;
1674 	}
1675 
1676 	APPEND16(type);
1677 	APPEND16(class);
1678 
1679 	return (int)j;
1680  overflow:
1681 	return (-1);
1682 }
1683 
1684 /* exported function */
1685 struct evdns_server_port *
evdns_add_server_port_with_base(struct event_base * base,evutil_socket_t socket,int flags,evdns_request_callback_fn_type cb,void * user_data)1686 evdns_add_server_port_with_base(struct event_base *base, evutil_socket_t socket, int flags, evdns_request_callback_fn_type cb, void *user_data)
1687 {
1688 	struct evdns_server_port *port;
1689 	if (flags)
1690 		return NULL; /* flags not yet implemented */
1691 	if (!(port = mm_malloc(sizeof(struct evdns_server_port))))
1692 		return NULL;
1693 	memset(port, 0, sizeof(struct evdns_server_port));
1694 
1695 
1696 	port->socket = socket;
1697 	port->refcnt = 1;
1698 	port->choked = 0;
1699 	port->closing = 0;
1700 	port->user_callback = cb;
1701 	port->user_data = user_data;
1702 	port->pending_replies = NULL;
1703 	port->event_base = base;
1704 
1705 	event_assign(&port->event, port->event_base,
1706 				 port->socket, EV_READ | EV_PERSIST,
1707 				 server_port_ready_callback, port);
1708 	if (event_add(&port->event, NULL) < 0) {
1709 		mm_free(port);
1710 		return NULL;
1711 	}
1712 	EVTHREAD_ALLOC_LOCK(port->lock, EVTHREAD_LOCKTYPE_RECURSIVE);
1713 	return port;
1714 }
1715 
1716 struct evdns_server_port *
evdns_add_server_port(evutil_socket_t socket,int flags,evdns_request_callback_fn_type cb,void * user_data)1717 evdns_add_server_port(evutil_socket_t socket, int flags, evdns_request_callback_fn_type cb, void *user_data)
1718 {
1719 	return evdns_add_server_port_with_base(NULL, socket, flags, cb, user_data);
1720 }
1721 
1722 /* exported function */
1723 void
evdns_close_server_port(struct evdns_server_port * port)1724 evdns_close_server_port(struct evdns_server_port *port)
1725 {
1726 	EVDNS_LOCK(port);
1727 	if (--port->refcnt == 0) {
1728 		EVDNS_UNLOCK(port);
1729 		server_port_free(port);
1730 	} else {
1731 		port->closing = 1;
1732 	}
1733 }
1734 
1735 /* exported function */
1736 int
evdns_server_request_add_reply(struct evdns_server_request * _req,int section,const char * name,int type,int class,int ttl,int datalen,int is_name,const char * data)1737 evdns_server_request_add_reply(struct evdns_server_request *_req, int section, const char *name, int type, int class, int ttl, int datalen, int is_name, const char *data)
1738 {
1739 	struct server_request *req = TO_SERVER_REQUEST(_req);
1740 	struct server_reply_item **itemp, *item;
1741 	int *countp;
1742 	int result = -1;
1743 
1744 	EVDNS_LOCK(req->port);
1745 	if (req->response) /* have we already answered? */
1746 		goto done;
1747 
1748 	switch (section) {
1749 	case EVDNS_ANSWER_SECTION:
1750 		itemp = &req->answer;
1751 		countp = &req->n_answer;
1752 		break;
1753 	case EVDNS_AUTHORITY_SECTION:
1754 		itemp = &req->authority;
1755 		countp = &req->n_authority;
1756 		break;
1757 	case EVDNS_ADDITIONAL_SECTION:
1758 		itemp = &req->additional;
1759 		countp = &req->n_additional;
1760 		break;
1761 	default:
1762 		goto done;
1763 	}
1764 	while (*itemp) {
1765 		itemp = &((*itemp)->next);
1766 	}
1767 	item = mm_malloc(sizeof(struct server_reply_item));
1768 	if (!item)
1769 		goto done;
1770 	item->next = NULL;
1771 	if (!(item->name = mm_strdup(name))) {
1772 		mm_free(item);
1773 		goto done;
1774 	}
1775 	item->type = type;
1776 	item->dns_question_class = class;
1777 	item->ttl = ttl;
1778 	item->is_name = is_name != 0;
1779 	item->datalen = 0;
1780 	item->data = NULL;
1781 	if (data) {
1782 		if (item->is_name) {
1783 			if (!(item->data = mm_strdup(data))) {
1784 				mm_free(item->name);
1785 				mm_free(item);
1786 				goto done;
1787 			}
1788 			item->datalen = (u16)-1;
1789 		} else {
1790 			if (!(item->data = mm_malloc(datalen))) {
1791 				mm_free(item->name);
1792 				mm_free(item);
1793 				goto done;
1794 			}
1795 			item->datalen = datalen;
1796 			memcpy(item->data, data, datalen);
1797 		}
1798 	}
1799 
1800 	*itemp = item;
1801 	++(*countp);
1802 	result = 0;
1803 done:
1804 	EVDNS_UNLOCK(req->port);
1805 	return result;
1806 }
1807 
1808 /* exported function */
1809 int
evdns_server_request_add_a_reply(struct evdns_server_request * req,const char * name,int n,const void * addrs,int ttl)1810 evdns_server_request_add_a_reply(struct evdns_server_request *req, const char *name, int n, const void *addrs, int ttl)
1811 {
1812 	return evdns_server_request_add_reply(
1813 		  req, EVDNS_ANSWER_SECTION, name, TYPE_A, CLASS_INET,
1814 		  ttl, n*4, 0, addrs);
1815 }
1816 
1817 /* exported function */
1818 int
evdns_server_request_add_aaaa_reply(struct evdns_server_request * req,const char * name,int n,const void * addrs,int ttl)1819 evdns_server_request_add_aaaa_reply(struct evdns_server_request *req, const char *name, int n, const void *addrs, int ttl)
1820 {
1821 	return evdns_server_request_add_reply(
1822 		  req, EVDNS_ANSWER_SECTION, name, TYPE_AAAA, CLASS_INET,
1823 		  ttl, n*16, 0, addrs);
1824 }
1825 
1826 /* exported function */
1827 int
evdns_server_request_add_ptr_reply(struct evdns_server_request * req,struct in_addr * in,const char * inaddr_name,const char * hostname,int ttl)1828 evdns_server_request_add_ptr_reply(struct evdns_server_request *req, struct in_addr *in, const char *inaddr_name, const char *hostname, int ttl)
1829 {
1830 	u32 a;
1831 	char buf[32];
1832 	if (in && inaddr_name)
1833 		return -1;
1834 	else if (!in && !inaddr_name)
1835 		return -1;
1836 	if (in) {
1837 		a = ntohl(in->s_addr);
1838 		evutil_snprintf(buf, sizeof(buf), "%d.%d.%d.%d.in-addr.arpa",
1839 				(int)(u8)((a	)&0xff),
1840 				(int)(u8)((a>>8 )&0xff),
1841 				(int)(u8)((a>>16)&0xff),
1842 				(int)(u8)((a>>24)&0xff));
1843 		inaddr_name = buf;
1844 	}
1845 	return evdns_server_request_add_reply(
1846 		  req, EVDNS_ANSWER_SECTION, inaddr_name, TYPE_PTR, CLASS_INET,
1847 		  ttl, -1, 1, hostname);
1848 }
1849 
1850 /* exported function */
1851 int
evdns_server_request_add_cname_reply(struct evdns_server_request * req,const char * name,const char * cname,int ttl)1852 evdns_server_request_add_cname_reply(struct evdns_server_request *req, const char *name, const char *cname, int ttl)
1853 {
1854 	return evdns_server_request_add_reply(
1855 		  req, EVDNS_ANSWER_SECTION, name, TYPE_CNAME, CLASS_INET,
1856 		  ttl, -1, 1, cname);
1857 }
1858 
1859 /* exported function */
1860 void
evdns_server_request_set_flags(struct evdns_server_request * exreq,int flags)1861 evdns_server_request_set_flags(struct evdns_server_request *exreq, int flags)
1862 {
1863 	struct server_request *req = TO_SERVER_REQUEST(exreq);
1864 	req->base.flags &= ~(EVDNS_FLAGS_AA|EVDNS_FLAGS_RD);
1865 	req->base.flags |= flags;
1866 }
1867 
1868 static int
evdns_server_request_format_response(struct server_request * req,int err)1869 evdns_server_request_format_response(struct server_request *req, int err)
1870 {
1871 	unsigned char buf[1500];
1872 	size_t buf_len = sizeof(buf);
1873 	off_t j = 0, r;
1874 	u16 _t;
1875 	u32 _t32;
1876 	int i;
1877 	u16 flags;
1878 	struct dnslabel_table table;
1879 
1880 	if (err < 0 || err > 15) return -1;
1881 
1882 	/* Set response bit and error code; copy OPCODE and RD fields from
1883 	 * question; copy RA and AA if set by caller. */
1884 	flags = req->base.flags;
1885 	flags |= (0x8000 | err);
1886 
1887 	dnslabel_table_init(&table);
1888 	APPEND16(req->trans_id);
1889 	APPEND16(flags);
1890 	APPEND16(req->base.nquestions);
1891 	APPEND16(req->n_answer);
1892 	APPEND16(req->n_authority);
1893 	APPEND16(req->n_additional);
1894 
1895 	/* Add questions. */
1896 	for (i=0; i < req->base.nquestions; ++i) {
1897 		const char *s = req->base.questions[i]->name;
1898 		j = dnsname_to_labels(buf, buf_len, j, s, strlen(s), &table);
1899 		if (j < 0) {
1900 			dnslabel_clear(&table);
1901 			return (int) j;
1902 		}
1903 		APPEND16(req->base.questions[i]->type);
1904 		APPEND16(req->base.questions[i]->dns_question_class);
1905 	}
1906 
1907 	/* Add answer, authority, and additional sections. */
1908 	for (i=0; i<3; ++i) {
1909 		struct server_reply_item *item;
1910 		if (i==0)
1911 			item = req->answer;
1912 		else if (i==1)
1913 			item = req->authority;
1914 		else
1915 			item = req->additional;
1916 		while (item) {
1917 			r = dnsname_to_labels(buf, buf_len, j, item->name, strlen(item->name), &table);
1918 			if (r < 0)
1919 				goto overflow;
1920 			j = r;
1921 
1922 			APPEND16(item->type);
1923 			APPEND16(item->dns_question_class);
1924 			APPEND32(item->ttl);
1925 			if (item->is_name) {
1926 				off_t len_idx = j, name_start;
1927 				j += 2;
1928 				name_start = j;
1929 				r = dnsname_to_labels(buf, buf_len, j, item->data, strlen(item->data), &table);
1930 				if (r < 0)
1931 					goto overflow;
1932 				j = r;
1933 				_t = htons( (short) (j-name_start) );
1934 				memcpy(buf+len_idx, &_t, 2);
1935 			} else {
1936 				APPEND16(item->datalen);
1937 				if (j+item->datalen > (off_t)buf_len)
1938 					goto overflow;
1939 				memcpy(buf+j, item->data, item->datalen);
1940 				j += item->datalen;
1941 			}
1942 			item = item->next;
1943 		}
1944 	}
1945 
1946 	if (j > 512) {
1947 overflow:
1948 		j = 512;
1949 		buf[2] |= 0x02; /* set the truncated bit. */
1950 	}
1951 
1952 	req->response_len = j;
1953 
1954 	if (!(req->response = mm_malloc(req->response_len))) {
1955 		server_request_free_answers(req);
1956 		dnslabel_clear(&table);
1957 		return (-1);
1958 	}
1959 	memcpy(req->response, buf, req->response_len);
1960 	server_request_free_answers(req);
1961 	dnslabel_clear(&table);
1962 	return (0);
1963 }
1964 
1965 /* exported function */
1966 int
evdns_server_request_respond(struct evdns_server_request * _req,int err)1967 evdns_server_request_respond(struct evdns_server_request *_req, int err)
1968 {
1969 	struct server_request *req = TO_SERVER_REQUEST(_req);
1970 	struct evdns_server_port *port = req->port;
1971 	int r = -1;
1972 
1973 	EVDNS_LOCK(port);
1974 	if (!req->response) {
1975 		if ((r = evdns_server_request_format_response(req, err))<0)
1976 			goto done;
1977 	}
1978 
1979 	r = sendto(port->socket, req->response, (int)req->response_len, 0,
1980 			   (struct sockaddr*) &req->addr, (ev_socklen_t)req->addrlen);
1981 	if (r<0) {
1982 		int sock_err = evutil_socket_geterror(port->socket);
1983 		if (EVUTIL_ERR_RW_RETRIABLE(sock_err))
1984 			goto done;
1985 
1986 		if (port->pending_replies) {
1987 			req->prev_pending = port->pending_replies->prev_pending;
1988 			req->next_pending = port->pending_replies;
1989 			req->prev_pending->next_pending =
1990 				req->next_pending->prev_pending = req;
1991 		} else {
1992 			req->prev_pending = req->next_pending = req;
1993 			port->pending_replies = req;
1994 			port->choked = 1;
1995 
1996 			(void) event_del(&port->event);
1997 			event_assign(&port->event, port->event_base, port->socket, (port->closing?0:EV_READ) | EV_WRITE | EV_PERSIST, server_port_ready_callback, port);
1998 
1999 			if (event_add(&port->event, NULL) < 0) {
2000 				log(EVDNS_LOG_WARN, "Error from libevent when adding event for DNS server");
2001 			}
2002 
2003 		}
2004 
2005 		r = 1;
2006 		goto done;
2007 	}
2008 	if (server_request_free(req)) {
2009 		r = 0;
2010 		goto done;
2011 	}
2012 
2013 	if (port->pending_replies)
2014 		server_port_flush(port);
2015 
2016 	r = 0;
2017 done:
2018 	EVDNS_UNLOCK(port);
2019 	return r;
2020 }
2021 
2022 /* Free all storage held by RRs in req. */
2023 static void
server_request_free_answers(struct server_request * req)2024 server_request_free_answers(struct server_request *req)
2025 {
2026 	struct server_reply_item *victim, *next, **list;
2027 	int i;
2028 	for (i = 0; i < 3; ++i) {
2029 		if (i==0)
2030 			list = &req->answer;
2031 		else if (i==1)
2032 			list = &req->authority;
2033 		else
2034 			list = &req->additional;
2035 
2036 		victim = *list;
2037 		while (victim) {
2038 			next = victim->next;
2039 			mm_free(victim->name);
2040 			if (victim->data)
2041 				mm_free(victim->data);
2042 			mm_free(victim);
2043 			victim = next;
2044 		}
2045 		*list = NULL;
2046 	}
2047 }
2048 
2049 /* Free all storage held by req, and remove links to it. */
2050 /* return true iff we just wound up freeing the server_port. */
2051 static int
server_request_free(struct server_request * req)2052 server_request_free(struct server_request *req)
2053 {
2054 	int i, rc=1, lock=0;
2055 	if (req->base.questions) {
2056 		for (i = 0; i < req->base.nquestions; ++i)
2057 			mm_free(req->base.questions[i]);
2058 		mm_free(req->base.questions);
2059 	}
2060 
2061 	if (req->port) {
2062 		EVDNS_LOCK(req->port);
2063 		lock=1;
2064 		if (req->port->pending_replies == req) {
2065 			if (req->next_pending && req->next_pending != req)
2066 				req->port->pending_replies = req->next_pending;
2067 			else
2068 				req->port->pending_replies = NULL;
2069 		}
2070 		rc = --req->port->refcnt;
2071 	}
2072 
2073 	if (req->response) {
2074 		mm_free(req->response);
2075 	}
2076 
2077 	server_request_free_answers(req);
2078 
2079 	if (req->next_pending && req->next_pending != req) {
2080 		req->next_pending->prev_pending = req->prev_pending;
2081 		req->prev_pending->next_pending = req->next_pending;
2082 	}
2083 
2084 	if (rc == 0) {
2085 		EVDNS_UNLOCK(req->port); /* ????? nickm */
2086 		server_port_free(req->port);
2087 		mm_free(req);
2088 		return (1);
2089 	}
2090 	if (lock)
2091 		EVDNS_UNLOCK(req->port);
2092 	mm_free(req);
2093 	return (0);
2094 }
2095 
2096 /* Free all storage held by an evdns_server_port.  Only called when  */
2097 static void
server_port_free(struct evdns_server_port * port)2098 server_port_free(struct evdns_server_port *port)
2099 {
2100 	EVUTIL_ASSERT(port);
2101 	EVUTIL_ASSERT(!port->refcnt);
2102 	EVUTIL_ASSERT(!port->pending_replies);
2103 	if (port->socket > 0) {
2104 		evutil_closesocket(port->socket);
2105 		port->socket = -1;
2106 	}
2107 	(void) event_del(&port->event);
2108 	event_debug_unassign(&port->event);
2109 	EVTHREAD_FREE_LOCK(port->lock, EVTHREAD_LOCKTYPE_RECURSIVE);
2110 	mm_free(port);
2111 }
2112 
2113 /* exported function */
2114 int
evdns_server_request_drop(struct evdns_server_request * _req)2115 evdns_server_request_drop(struct evdns_server_request *_req)
2116 {
2117 	struct server_request *req = TO_SERVER_REQUEST(_req);
2118 	server_request_free(req);
2119 	return 0;
2120 }
2121 
2122 /* exported function */
2123 int
evdns_server_request_get_requesting_addr(struct evdns_server_request * _req,struct sockaddr * sa,int addr_len)2124 evdns_server_request_get_requesting_addr(struct evdns_server_request *_req, struct sockaddr *sa, int addr_len)
2125 {
2126 	struct server_request *req = TO_SERVER_REQUEST(_req);
2127 	if (addr_len < (int)req->addrlen)
2128 		return -1;
2129 	memcpy(sa, &(req->addr), req->addrlen);
2130 	return req->addrlen;
2131 }
2132 
2133 #undef APPEND16
2134 #undef APPEND32
2135 
2136 /* this is a libevent callback function which is called when a request */
2137 /* has timed out. */
2138 static void
evdns_request_timeout_callback(evutil_socket_t fd,short events,void * arg)2139 evdns_request_timeout_callback(evutil_socket_t fd, short events, void *arg) {
2140 	struct request *const req = (struct request *) arg;
2141 #ifndef _EVENT_DISABLE_THREAD_SUPPORT
2142 	struct evdns_base *base = req->base;
2143 #endif
2144 	(void) fd;
2145 	(void) events;
2146 
2147 	log(EVDNS_LOG_DEBUG, "Request %p timed out", arg);
2148 	EVDNS_LOCK(base);
2149 
2150 	req->ns->timedout++;
2151 	if (req->ns->timedout > req->base->global_max_nameserver_timeout) {
2152 		req->ns->timedout = 0;
2153 		nameserver_failed(req->ns, "request timed out.");
2154 	}
2155 
2156 	if (req->tx_count >= req->base->global_max_retransmits) {
2157 		/* this request has failed */
2158 		reply_schedule_callback(req, 0, DNS_ERR_TIMEOUT, NULL);
2159 		request_finished(req, &REQ_HEAD(req->base, req->trans_id), 1);
2160 	} else {
2161 		/* retransmit it */
2162 		(void) evtimer_del(&req->timeout_event);
2163 		evdns_request_transmit(req);
2164 	}
2165 	EVDNS_UNLOCK(base);
2166 }
2167 
2168 /* try to send a request to a given server. */
2169 /* */
2170 /* return: */
2171 /*   0 ok */
2172 /*   1 temporary failure */
2173 /*   2 other failure */
2174 static int
evdns_request_transmit_to(struct request * req,struct nameserver * server)2175 evdns_request_transmit_to(struct request *req, struct nameserver *server) {
2176 	int r;
2177 	ASSERT_LOCKED(req->base);
2178 	ASSERT_VALID_REQUEST(req);
2179 	r = sendto(server->socket, (void*)req->request, req->request_len, 0,
2180 	    (struct sockaddr *)&server->address, server->addrlen);
2181 	if (r < 0) {
2182 		int err = evutil_socket_geterror(server->socket);
2183 		if (EVUTIL_ERR_RW_RETRIABLE(err))
2184 			return 1;
2185 		nameserver_failed(req->ns, evutil_socket_error_to_string(err));
2186 		return 2;
2187 	} else if (r != (int)req->request_len) {
2188 		return 1;  /* short write */
2189 	} else {
2190 		return 0;
2191 	}
2192 }
2193 
2194 /* try to send a request, updating the fields of the request */
2195 /* as needed */
2196 /* */
2197 /* return: */
2198 /*   0 ok */
2199 /*   1 failed */
2200 static int
evdns_request_transmit(struct request * req)2201 evdns_request_transmit(struct request *req) {
2202 	int retcode = 0, r;
2203 
2204 	ASSERT_LOCKED(req->base);
2205 	ASSERT_VALID_REQUEST(req);
2206 	/* if we fail to send this packet then this flag marks it */
2207 	/* for evdns_transmit */
2208 	req->transmit_me = 1;
2209 	EVUTIL_ASSERT(req->trans_id != 0xffff);
2210 
2211 	if (req->ns->choked) {
2212 		/* don't bother trying to write to a socket */
2213 		/* which we have had EAGAIN from */
2214 		return 1;
2215 	}
2216 
2217 	r = evdns_request_transmit_to(req, req->ns);
2218 	switch (r) {
2219 	case 1:
2220 		/* temp failure */
2221 		req->ns->choked = 1;
2222 		nameserver_write_waiting(req->ns, 1);
2223 		return 1;
2224 	case 2:
2225 		/* failed to transmit the request entirely. */
2226 		retcode = 1;
2227 		/* fall through: we'll set a timeout, which will time out,
2228 		 * and make us retransmit the request anyway. */
2229 	default:
2230 		/* all ok */
2231 		log(EVDNS_LOG_DEBUG,
2232 		    "Setting timeout for request %p", req);
2233 		if (evtimer_add(&req->timeout_event, &req->base->global_timeout) < 0) {
2234 			log(EVDNS_LOG_WARN,
2235 		      "Error from libevent when adding timer for request %p",
2236 			    req);
2237 			/* ???? Do more? */
2238 		}
2239 		req->tx_count++;
2240 		req->transmit_me = 0;
2241 		return retcode;
2242 	}
2243 }
2244 
2245 static void
nameserver_probe_callback(int result,char type,int count,int ttl,void * addresses,void * arg)2246 nameserver_probe_callback(int result, char type, int count, int ttl, void *addresses, void *arg) {
2247 	struct nameserver *const ns = (struct nameserver *) arg;
2248 	(void) type;
2249 	(void) count;
2250 	(void) ttl;
2251 	(void) addresses;
2252 
2253 	EVDNS_LOCK(ns->base);
2254 	ns->probe_request = NULL;
2255 	if (result == DNS_ERR_CANCEL) {
2256 		/* We canceled this request because the nameserver came up
2257 		 * for some other reason.  Do not change our opinion about
2258 		 * the nameserver. */
2259 	} else if (result == DNS_ERR_NONE || result == DNS_ERR_NOTEXIST) {
2260 		/* this is a good reply */
2261 		nameserver_up(ns);
2262 	} else {
2263 		nameserver_probe_failed(ns);
2264 	}
2265 	EVDNS_UNLOCK(ns->base);
2266 }
2267 
2268 static void
nameserver_send_probe(struct nameserver * const ns)2269 nameserver_send_probe(struct nameserver *const ns) {
2270 	struct evdns_request *handle;
2271 	struct request *req;
2272 	char addrbuf[128];
2273 	/* here we need to send a probe to a given nameserver */
2274 	/* in the hope that it is up now. */
2275 
2276 	ASSERT_LOCKED(ns->base);
2277 	log(EVDNS_LOG_DEBUG, "Sending probe to %s",
2278 	    evutil_format_sockaddr_port(
2279 		    (struct sockaddr *)&ns->address,
2280 		    addrbuf, sizeof(addrbuf)));
2281 	handle = mm_calloc(1, sizeof(*handle));
2282 	if (!handle) return;
2283 	req = request_new(ns->base, handle, TYPE_A, "google.com", DNS_QUERY_NO_SEARCH, nameserver_probe_callback, ns);
2284 	if (!req) return;
2285 	ns->probe_request = handle;
2286 	/* we force this into the inflight queue no matter what */
2287 	request_trans_id_set(req, transaction_id_pick(ns->base));
2288 	req->ns = ns;
2289 	request_submit(req);
2290 }
2291 
2292 /* returns: */
2293 /*   0 didn't try to transmit anything */
2294 /*   1 tried to transmit something */
2295 static int
evdns_transmit(struct evdns_base * base)2296 evdns_transmit(struct evdns_base *base) {
2297 	char did_try_to_transmit = 0;
2298 	int i;
2299 
2300 	ASSERT_LOCKED(base);
2301 	for (i = 0; i < base->n_req_heads; ++i) {
2302 		if (base->req_heads[i]) {
2303 			struct request *const started_at = base->req_heads[i], *req = started_at;
2304 			/* first transmit all the requests which are currently waiting */
2305 			do {
2306 				if (req->transmit_me) {
2307 					did_try_to_transmit = 1;
2308 					evdns_request_transmit(req);
2309 				}
2310 
2311 				req = req->next;
2312 			} while (req != started_at);
2313 		}
2314 	}
2315 
2316 	return did_try_to_transmit;
2317 }
2318 
2319 /* exported function */
2320 int
evdns_base_count_nameservers(struct evdns_base * base)2321 evdns_base_count_nameservers(struct evdns_base *base)
2322 {
2323 	const struct nameserver *server;
2324 	int n = 0;
2325 
2326 	EVDNS_LOCK(base);
2327 	server = base->server_head;
2328 	if (!server)
2329 		goto done;
2330 	do {
2331 		++n;
2332 		server = server->next;
2333 	} while (server != base->server_head);
2334 done:
2335 	EVDNS_UNLOCK(base);
2336 	return n;
2337 }
2338 
2339 int
evdns_count_nameservers(void)2340 evdns_count_nameservers(void)
2341 {
2342 	return evdns_base_count_nameservers(current_base);
2343 }
2344 
2345 /* exported function */
2346 int
evdns_base_clear_nameservers_and_suspend(struct evdns_base * base)2347 evdns_base_clear_nameservers_and_suspend(struct evdns_base *base)
2348 {
2349 	struct nameserver *server, *started_at;
2350 	int i;
2351 
2352 	EVDNS_LOCK(base);
2353 	server = base->server_head;
2354 	started_at = base->server_head;
2355 	if (!server) {
2356 		EVDNS_UNLOCK(base);
2357 		return 0;
2358 	}
2359 	while (1) {
2360 		struct nameserver *next = server->next;
2361 		(void) event_del(&server->event);
2362 		if (evtimer_initialized(&server->timeout_event))
2363 			(void) evtimer_del(&server->timeout_event);
2364 		if (server->socket >= 0)
2365 			evutil_closesocket(server->socket);
2366 		mm_free(server);
2367 		if (next == started_at)
2368 			break;
2369 		server = next;
2370 	}
2371 	base->server_head = NULL;
2372 	base->global_good_nameservers = 0;
2373 
2374 	for (i = 0; i < base->n_req_heads; ++i) {
2375 		struct request *req, *req_started_at;
2376 		req = req_started_at = base->req_heads[i];
2377 		while (req) {
2378 			struct request *next = req->next;
2379 			req->tx_count = req->reissue_count = 0;
2380 			req->ns = NULL;
2381 			/* ???? What to do about searches? */
2382 			(void) evtimer_del(&req->timeout_event);
2383 			req->trans_id = 0;
2384 			req->transmit_me = 0;
2385 
2386 			base->global_requests_waiting++;
2387 			evdns_request_insert(req, &base->req_waiting_head);
2388 			/* We want to insert these suspended elements at the front of
2389 			 * the waiting queue, since they were pending before any of
2390 			 * the waiting entries were added.  This is a circular list,
2391 			 * so we can just shift the start back by one.*/
2392 			base->req_waiting_head = base->req_waiting_head->prev;
2393 
2394 			if (next == req_started_at)
2395 				break;
2396 			req = next;
2397 		}
2398 		base->req_heads[i] = NULL;
2399 	}
2400 
2401 	base->global_requests_inflight = 0;
2402 
2403 	EVDNS_UNLOCK(base);
2404 	return 0;
2405 }
2406 
2407 int
evdns_clear_nameservers_and_suspend(void)2408 evdns_clear_nameservers_and_suspend(void)
2409 {
2410 	return evdns_base_clear_nameservers_and_suspend(current_base);
2411 }
2412 
2413 
2414 /* exported function */
2415 int
evdns_base_resume(struct evdns_base * base)2416 evdns_base_resume(struct evdns_base *base)
2417 {
2418 	EVDNS_LOCK(base);
2419 	evdns_requests_pump_waiting_queue(base);
2420 	EVDNS_UNLOCK(base);
2421 	return 0;
2422 }
2423 
2424 int
evdns_resume(void)2425 evdns_resume(void)
2426 {
2427 	return evdns_base_resume(current_base);
2428 }
2429 
2430 static int
_evdns_nameserver_add_impl(struct evdns_base * base,const struct sockaddr * address,int addrlen)2431 _evdns_nameserver_add_impl(struct evdns_base *base, const struct sockaddr *address, int addrlen) {
2432 	/* first check to see if we already have this nameserver */
2433 
2434 	const struct nameserver *server = base->server_head, *const started_at = base->server_head;
2435 	struct nameserver *ns;
2436 	int err = 0;
2437 	char addrbuf[128];
2438 
2439 	ASSERT_LOCKED(base);
2440 	if (server) {
2441 		do {
2442 			if (!evutil_sockaddr_cmp((struct sockaddr*)&server->address, address, 1)) return 3;
2443 			server = server->next;
2444 		} while (server != started_at);
2445 	}
2446 	if (addrlen > (int)sizeof(ns->address)) {
2447 		log(EVDNS_LOG_DEBUG, "Addrlen %d too long.", (int)addrlen);
2448 		return 2;
2449 	}
2450 
2451 	ns = (struct nameserver *) mm_malloc(sizeof(struct nameserver));
2452 	if (!ns) return -1;
2453 
2454 	memset(ns, 0, sizeof(struct nameserver));
2455 	ns->base = base;
2456 
2457 	evtimer_assign(&ns->timeout_event, ns->base->event_base, nameserver_prod_callback, ns);
2458 
2459 	ns->socket = socket(address->sa_family, SOCK_DGRAM, 0);
2460 	if (ns->socket < 0) { err = 1; goto out1; }
2461 	evutil_make_socket_closeonexec(ns->socket);
2462 	evutil_make_socket_nonblocking(ns->socket);
2463 
2464 	if (base->global_outgoing_addrlen &&
2465 	    !evutil_sockaddr_is_loopback(address)) {
2466 		if (bind(ns->socket,
2467 			(struct sockaddr*)&base->global_outgoing_address,
2468 			base->global_outgoing_addrlen) < 0) {
2469 			log(EVDNS_LOG_WARN,"Couldn't bind to outgoing address");
2470 			err = 2;
2471 			goto out2;
2472 		}
2473 	}
2474 
2475 	memcpy(&ns->address, address, addrlen);
2476 	ns->addrlen = addrlen;
2477 	ns->state = 1;
2478 	event_assign(&ns->event, ns->base->event_base, ns->socket, EV_READ | EV_PERSIST, nameserver_ready_callback, ns);
2479 	if (event_add(&ns->event, NULL) < 0) {
2480 		err = 2;
2481 		goto out2;
2482 	}
2483 
2484 	log(EVDNS_LOG_DEBUG, "Added nameserver %s",
2485 	    evutil_format_sockaddr_port(address, addrbuf, sizeof(addrbuf)));
2486 
2487 	/* insert this nameserver into the list of them */
2488 	if (!base->server_head) {
2489 		ns->next = ns->prev = ns;
2490 		base->server_head = ns;
2491 	} else {
2492 		ns->next = base->server_head->next;
2493 		ns->prev = base->server_head;
2494 		base->server_head->next = ns;
2495 		ns->next->prev = ns;
2496 	}
2497 
2498 	base->global_good_nameservers++;
2499 
2500 	return 0;
2501 
2502 out2:
2503 	evutil_closesocket(ns->socket);
2504 out1:
2505 	event_debug_unassign(&ns->event);
2506 	mm_free(ns);
2507 	log(EVDNS_LOG_WARN, "Unable to add nameserver %s: error %d",
2508 	    evutil_format_sockaddr_port(address, addrbuf, sizeof(addrbuf)), err);
2509 	return err;
2510 }
2511 
2512 /* exported function */
2513 int
evdns_base_nameserver_add(struct evdns_base * base,unsigned long int address)2514 evdns_base_nameserver_add(struct evdns_base *base, unsigned long int address)
2515 {
2516 	struct sockaddr_in sin;
2517 	int res;
2518 	sin.sin_addr.s_addr = address;
2519 	sin.sin_port = htons(53);
2520 	sin.sin_family = AF_INET;
2521 	EVDNS_LOCK(base);
2522 	res = _evdns_nameserver_add_impl(base, (struct sockaddr*)&sin, sizeof(sin));
2523 	EVDNS_UNLOCK(base);
2524 	return res;
2525 }
2526 
2527 int
evdns_nameserver_add(unsigned long int address)2528 evdns_nameserver_add(unsigned long int address) {
2529 	if (!current_base)
2530 		current_base = evdns_base_new(NULL, 0);
2531 	return evdns_base_nameserver_add(current_base, address);
2532 }
2533 
2534 static void
sockaddr_setport(struct sockaddr * sa,ev_uint16_t port)2535 sockaddr_setport(struct sockaddr *sa, ev_uint16_t port)
2536 {
2537 	if (sa->sa_family == AF_INET) {
2538 		((struct sockaddr_in *)sa)->sin_port = htons(port);
2539 	} else if (sa->sa_family == AF_INET6) {
2540 		((struct sockaddr_in6 *)sa)->sin6_port = htons(port);
2541 	}
2542 }
2543 
2544 static ev_uint16_t
sockaddr_getport(struct sockaddr * sa)2545 sockaddr_getport(struct sockaddr *sa)
2546 {
2547 	if (sa->sa_family == AF_INET) {
2548 		return ntohs(((struct sockaddr_in *)sa)->sin_port);
2549 	} else if (sa->sa_family == AF_INET6) {
2550 		return ntohs(((struct sockaddr_in6 *)sa)->sin6_port);
2551 	} else {
2552 		return 0;
2553 	}
2554 }
2555 
2556 /* exported function */
2557 int
evdns_base_nameserver_ip_add(struct evdns_base * base,const char * ip_as_string)2558 evdns_base_nameserver_ip_add(struct evdns_base *base, const char *ip_as_string) {
2559 	struct sockaddr_storage ss;
2560 	struct sockaddr *sa;
2561 	int len = sizeof(ss);
2562 	int res;
2563 	if (evutil_parse_sockaddr_port(ip_as_string, (struct sockaddr *)&ss,
2564 		&len)) {
2565 		log(EVDNS_LOG_WARN, "Unable to parse nameserver address %s",
2566 			ip_as_string);
2567 		return 4;
2568 	}
2569 	sa = (struct sockaddr *) &ss;
2570 	if (sockaddr_getport(sa) == 0)
2571 		sockaddr_setport(sa, 53);
2572 
2573 	EVDNS_LOCK(base);
2574 	res = _evdns_nameserver_add_impl(base, sa, len);
2575 	EVDNS_UNLOCK(base);
2576 	return res;
2577 }
2578 
2579 int
evdns_nameserver_ip_add(const char * ip_as_string)2580 evdns_nameserver_ip_add(const char *ip_as_string) {
2581 	if (!current_base)
2582 		current_base = evdns_base_new(NULL, 0);
2583 	return evdns_base_nameserver_ip_add(current_base, ip_as_string);
2584 }
2585 
2586 int
evdns_base_nameserver_sockaddr_add(struct evdns_base * base,const struct sockaddr * sa,ev_socklen_t len,unsigned flags)2587 evdns_base_nameserver_sockaddr_add(struct evdns_base *base,
2588     const struct sockaddr *sa, ev_socklen_t len, unsigned flags)
2589 {
2590 	int res;
2591 	EVUTIL_ASSERT(base);
2592 	EVDNS_LOCK(base);
2593 	res = _evdns_nameserver_add_impl(base, sa, len);
2594 	EVDNS_UNLOCK(base);
2595 	return res;
2596 }
2597 
2598 /* remove from the queue */
2599 static void
evdns_request_remove(struct request * req,struct request ** head)2600 evdns_request_remove(struct request *req, struct request **head)
2601 {
2602 	ASSERT_LOCKED(req->base);
2603 	ASSERT_VALID_REQUEST(req);
2604 
2605 #if 0
2606 	{
2607 		struct request *ptr;
2608 		int found = 0;
2609 		EVUTIL_ASSERT(*head != NULL);
2610 
2611 		ptr = *head;
2612 		do {
2613 			if (ptr == req) {
2614 				found = 1;
2615 				break;
2616 			}
2617 			ptr = ptr->next;
2618 		} while (ptr != *head);
2619 		EVUTIL_ASSERT(found);
2620 
2621 		EVUTIL_ASSERT(req->next);
2622 	}
2623 #endif
2624 
2625 	if (req->next == req) {
2626 		/* only item in the list */
2627 		*head = NULL;
2628 	} else {
2629 		req->next->prev = req->prev;
2630 		req->prev->next = req->next;
2631 		if (*head == req) *head = req->next;
2632 	}
2633 	req->next = req->prev = NULL;
2634 }
2635 
2636 /* insert into the tail of the queue */
2637 static void
evdns_request_insert(struct request * req,struct request ** head)2638 evdns_request_insert(struct request *req, struct request **head) {
2639 	ASSERT_LOCKED(req->base);
2640 	ASSERT_VALID_REQUEST(req);
2641 	if (!*head) {
2642 		*head = req;
2643 		req->next = req->prev = req;
2644 		return;
2645 	}
2646 
2647 	req->prev = (*head)->prev;
2648 	req->prev->next = req;
2649 	req->next = *head;
2650 	(*head)->prev = req;
2651 }
2652 
2653 static int
string_num_dots(const char * s)2654 string_num_dots(const char *s) {
2655 	int count = 0;
2656 	while ((s = strchr(s, '.'))) {
2657 		s++;
2658 		count++;
2659 	}
2660 	return count;
2661 }
2662 
2663 static struct request *
request_new(struct evdns_base * base,struct evdns_request * handle,int type,const char * name,int flags,evdns_callback_type callback,void * user_ptr)2664 request_new(struct evdns_base *base, struct evdns_request *handle, int type,
2665 	    const char *name, int flags, evdns_callback_type callback,
2666 	    void *user_ptr) {
2667 
2668 	const char issuing_now =
2669 	    (base->global_requests_inflight < base->global_max_requests_inflight) ? 1 : 0;
2670 
2671 	const size_t name_len = strlen(name);
2672 	const size_t request_max_len = evdns_request_len(name_len);
2673 	const u16 trans_id = issuing_now ? transaction_id_pick(base) : 0xffff;
2674 	/* the request data is alloced in a single block with the header */
2675 	struct request *const req =
2676 	    mm_malloc(sizeof(struct request) + request_max_len);
2677 	int rlen;
2678 	char namebuf[256];
2679 	(void) flags;
2680 
2681 	ASSERT_LOCKED(base);
2682 
2683 	if (!req) return NULL;
2684 
2685 	if (name_len >= sizeof(namebuf)) {
2686 		mm_free(req);
2687 		return NULL;
2688 	}
2689 
2690 	memset(req, 0, sizeof(struct request));
2691 	req->base = base;
2692 
2693 	evtimer_assign(&req->timeout_event, req->base->event_base, evdns_request_timeout_callback, req);
2694 
2695 	if (base->global_randomize_case) {
2696 		unsigned i;
2697 		char randbits[(sizeof(namebuf)+7)/8];
2698 		strlcpy(namebuf, name, sizeof(namebuf));
2699 		evutil_secure_rng_get_bytes(randbits, (name_len+7)/8);
2700 		for (i = 0; i < name_len; ++i) {
2701 			if (EVUTIL_ISALPHA(namebuf[i])) {
2702 				if ((randbits[i >> 3] & (1<<(i & 7))))
2703 					namebuf[i] |= 0x20;
2704 				else
2705 					namebuf[i] &= ~0x20;
2706 			}
2707 		}
2708 		name = namebuf;
2709 	}
2710 
2711 	/* request data lives just after the header */
2712 	req->request = ((u8 *) req) + sizeof(struct request);
2713 	/* denotes that the request data shouldn't be free()ed */
2714 	req->request_appended = 1;
2715 	rlen = evdns_request_data_build(name, name_len, trans_id,
2716 	    type, CLASS_INET, req->request, request_max_len);
2717 	if (rlen < 0)
2718 		goto err1;
2719 
2720 	req->request_len = rlen;
2721 	req->trans_id = trans_id;
2722 	req->tx_count = 0;
2723 	req->request_type = type;
2724 	req->user_pointer = user_ptr;
2725 	req->user_callback = callback;
2726 	req->ns = issuing_now ? nameserver_pick(base) : NULL;
2727 	req->next = req->prev = NULL;
2728 	req->handle = handle;
2729 	if (handle) {
2730 		handle->current_req = req;
2731 		handle->base = base;
2732 	}
2733 
2734 	return req;
2735 err1:
2736 	mm_free(req);
2737 	return NULL;
2738 }
2739 
2740 static void
request_submit(struct request * const req)2741 request_submit(struct request *const req) {
2742 	struct evdns_base *base = req->base;
2743 	ASSERT_LOCKED(base);
2744 	ASSERT_VALID_REQUEST(req);
2745 	if (req->ns) {
2746 		/* if it has a nameserver assigned then this is going */
2747 		/* straight into the inflight queue */
2748 		evdns_request_insert(req, &REQ_HEAD(base, req->trans_id));
2749 		base->global_requests_inflight++;
2750 		evdns_request_transmit(req);
2751 	} else {
2752 		evdns_request_insert(req, &base->req_waiting_head);
2753 		base->global_requests_waiting++;
2754 	}
2755 }
2756 
2757 /* exported function */
2758 void
evdns_cancel_request(struct evdns_base * base,struct evdns_request * handle)2759 evdns_cancel_request(struct evdns_base *base, struct evdns_request *handle)
2760 {
2761 	struct request *req;
2762 
2763 	if (!handle->current_req)
2764 		return;
2765 
2766 	if (!base) {
2767 		/* This redundancy is silly; can we fix it? (Not for 2.0) XXXX */
2768 		base = handle->base;
2769 		if (!base)
2770 			base = handle->current_req->base;
2771 	}
2772 
2773 	EVDNS_LOCK(base);
2774 	if (handle->pending_cb) {
2775 		EVDNS_UNLOCK(base);
2776 		return;
2777 	}
2778 
2779 	req = handle->current_req;
2780 	ASSERT_VALID_REQUEST(req);
2781 
2782 	reply_schedule_callback(req, 0, DNS_ERR_CANCEL, NULL);
2783 	if (req->ns) {
2784 		/* remove from inflight queue */
2785 		request_finished(req, &REQ_HEAD(base, req->trans_id), 1);
2786 	} else {
2787 		/* remove from global_waiting head */
2788 		request_finished(req, &base->req_waiting_head, 1);
2789 	}
2790 	EVDNS_UNLOCK(base);
2791 }
2792 
2793 /* exported function */
2794 struct evdns_request *
evdns_base_resolve_ipv4(struct evdns_base * base,const char * name,int flags,evdns_callback_type callback,void * ptr)2795 evdns_base_resolve_ipv4(struct evdns_base *base, const char *name, int flags,
2796     evdns_callback_type callback, void *ptr) {
2797 	struct evdns_request *handle;
2798 	struct request *req;
2799 	log(EVDNS_LOG_DEBUG, "Resolve requested for %s", name);
2800 	handle = mm_calloc(1, sizeof(*handle));
2801 	if (handle == NULL)
2802 		return NULL;
2803 	EVDNS_LOCK(base);
2804 	if (flags & DNS_QUERY_NO_SEARCH) {
2805 		req =
2806 			request_new(base, handle, TYPE_A, name, flags,
2807 				    callback, ptr);
2808 		if (req)
2809 			request_submit(req);
2810 	} else {
2811 		search_request_new(base, handle, TYPE_A, name, flags,
2812 		    callback, ptr);
2813 	}
2814 	if (handle->current_req == NULL) {
2815 		mm_free(handle);
2816 		handle = NULL;
2817 	}
2818 	EVDNS_UNLOCK(base);
2819 	return handle;
2820 }
2821 
evdns_resolve_ipv4(const char * name,int flags,evdns_callback_type callback,void * ptr)2822 int evdns_resolve_ipv4(const char *name, int flags,
2823 					   evdns_callback_type callback, void *ptr)
2824 {
2825 	return evdns_base_resolve_ipv4(current_base, name, flags, callback, ptr)
2826 		? 0 : -1;
2827 }
2828 
2829 
2830 /* exported function */
2831 struct evdns_request *
evdns_base_resolve_ipv6(struct evdns_base * base,const char * name,int flags,evdns_callback_type callback,void * ptr)2832 evdns_base_resolve_ipv6(struct evdns_base *base,
2833     const char *name, int flags,
2834     evdns_callback_type callback, void *ptr)
2835 {
2836 	struct evdns_request *handle;
2837 	struct request *req;
2838 	log(EVDNS_LOG_DEBUG, "Resolve requested for %s", name);
2839 	handle = mm_calloc(1, sizeof(*handle));
2840 	if (handle == NULL)
2841 		return NULL;
2842 	EVDNS_LOCK(base);
2843 	if (flags & DNS_QUERY_NO_SEARCH) {
2844 		req = request_new(base, handle, TYPE_AAAA, name, flags,
2845 				  callback, ptr);
2846 		if (req)
2847 			request_submit(req);
2848 	} else {
2849 		search_request_new(base, handle, TYPE_AAAA, name, flags,
2850 		    callback, ptr);
2851 	}
2852 	if (handle->current_req == NULL) {
2853 		mm_free(handle);
2854 		handle = NULL;
2855 	}
2856 	EVDNS_UNLOCK(base);
2857 	return handle;
2858 }
2859 
evdns_resolve_ipv6(const char * name,int flags,evdns_callback_type callback,void * ptr)2860 int evdns_resolve_ipv6(const char *name, int flags,
2861     evdns_callback_type callback, void *ptr) {
2862 	return evdns_base_resolve_ipv6(current_base, name, flags, callback, ptr)
2863 		? 0 : -1;
2864 }
2865 
2866 struct evdns_request *
evdns_base_resolve_reverse(struct evdns_base * base,const struct in_addr * in,int flags,evdns_callback_type callback,void * ptr)2867 evdns_base_resolve_reverse(struct evdns_base *base, const struct in_addr *in, int flags, evdns_callback_type callback, void *ptr) {
2868 	char buf[32];
2869 	struct evdns_request *handle;
2870 	struct request *req;
2871 	u32 a;
2872 	EVUTIL_ASSERT(in);
2873 	a = ntohl(in->s_addr);
2874 	evutil_snprintf(buf, sizeof(buf), "%d.%d.%d.%d.in-addr.arpa",
2875 			(int)(u8)((a	)&0xff),
2876 			(int)(u8)((a>>8 )&0xff),
2877 			(int)(u8)((a>>16)&0xff),
2878 			(int)(u8)((a>>24)&0xff));
2879 	handle = mm_calloc(1, sizeof(*handle));
2880 	if (handle == NULL)
2881 		return NULL;
2882 	log(EVDNS_LOG_DEBUG, "Resolve requested for %s (reverse)", buf);
2883 	EVDNS_LOCK(base);
2884 	req = request_new(base, handle, TYPE_PTR, buf, flags, callback, ptr);
2885 	if (req)
2886 		request_submit(req);
2887 	if (handle->current_req == NULL) {
2888 		mm_free(handle);
2889 		handle = NULL;
2890 	}
2891 	EVDNS_UNLOCK(base);
2892 	return (handle);
2893 }
2894 
evdns_resolve_reverse(const struct in_addr * in,int flags,evdns_callback_type callback,void * ptr)2895 int evdns_resolve_reverse(const struct in_addr *in, int flags, evdns_callback_type callback, void *ptr) {
2896 	return evdns_base_resolve_reverse(current_base, in, flags, callback, ptr)
2897 		? 0 : -1;
2898 }
2899 
2900 struct evdns_request *
evdns_base_resolve_reverse_ipv6(struct evdns_base * base,const struct in6_addr * in,int flags,evdns_callback_type callback,void * ptr)2901 evdns_base_resolve_reverse_ipv6(struct evdns_base *base, const struct in6_addr *in, int flags, evdns_callback_type callback, void *ptr) {
2902 	/* 32 nybbles, 32 periods, "ip6.arpa", NUL. */
2903 	char buf[73];
2904 	char *cp;
2905 	struct evdns_request *handle;
2906 	struct request *req;
2907 	int i;
2908 	EVUTIL_ASSERT(in);
2909 	cp = buf;
2910 	for (i=15; i >= 0; --i) {
2911 		u8 byte = in->s6_addr[i];
2912 		*cp++ = "0123456789abcdef"[byte & 0x0f];
2913 		*cp++ = '.';
2914 		*cp++ = "0123456789abcdef"[byte >> 4];
2915 		*cp++ = '.';
2916 	}
2917 	EVUTIL_ASSERT(cp + strlen("ip6.arpa") < buf+sizeof(buf));
2918 	memcpy(cp, "ip6.arpa", strlen("ip6.arpa")+1);
2919 	handle = mm_calloc(1, sizeof(*handle));
2920 	if (handle == NULL)
2921 		return NULL;
2922 	log(EVDNS_LOG_DEBUG, "Resolve requested for %s (reverse)", buf);
2923 	EVDNS_LOCK(base);
2924 	req = request_new(base, handle, TYPE_PTR, buf, flags, callback, ptr);
2925 	if (req)
2926 		request_submit(req);
2927 	if (handle->current_req == NULL) {
2928 		mm_free(handle);
2929 		handle = NULL;
2930 	}
2931 	EVDNS_UNLOCK(base);
2932 	return (handle);
2933 }
2934 
evdns_resolve_reverse_ipv6(const struct in6_addr * in,int flags,evdns_callback_type callback,void * ptr)2935 int evdns_resolve_reverse_ipv6(const struct in6_addr *in, int flags, evdns_callback_type callback, void *ptr) {
2936 	return evdns_base_resolve_reverse_ipv6(current_base, in, flags, callback, ptr)
2937 		? 0 : -1;
2938 }
2939 
2940 /* ================================================================= */
2941 /* Search support */
2942 /* */
2943 /* the libc resolver has support for searching a number of domains */
2944 /* to find a name. If nothing else then it takes the single domain */
2945 /* from the gethostname() call. */
2946 /* */
2947 /* It can also be configured via the domain and search options in a */
2948 /* resolv.conf. */
2949 /* */
2950 /* The ndots option controls how many dots it takes for the resolver */
2951 /* to decide that a name is non-local and so try a raw lookup first. */
2952 
2953 struct search_domain {
2954 	int len;
2955 	struct search_domain *next;
2956 	/* the text string is appended to this structure */
2957 };
2958 
2959 struct search_state {
2960 	int refcount;
2961 	int ndots;
2962 	int num_domains;
2963 	struct search_domain *head;
2964 };
2965 
2966 static void
search_state_decref(struct search_state * const state)2967 search_state_decref(struct search_state *const state) {
2968 	if (!state) return;
2969 	state->refcount--;
2970 	if (!state->refcount) {
2971 		struct search_domain *next, *dom;
2972 		for (dom = state->head; dom; dom = next) {
2973 			next = dom->next;
2974 			mm_free(dom);
2975 		}
2976 		mm_free(state);
2977 	}
2978 }
2979 
2980 static struct search_state *
search_state_new(void)2981 search_state_new(void) {
2982 	struct search_state *state = (struct search_state *) mm_malloc(sizeof(struct search_state));
2983 	if (!state) return NULL;
2984 	memset(state, 0, sizeof(struct search_state));
2985 	state->refcount = 1;
2986 	state->ndots = 1;
2987 
2988 	return state;
2989 }
2990 
2991 static void
search_postfix_clear(struct evdns_base * base)2992 search_postfix_clear(struct evdns_base *base) {
2993 	search_state_decref(base->global_search_state);
2994 
2995 	base->global_search_state = search_state_new();
2996 }
2997 
2998 /* exported function */
2999 void
evdns_base_search_clear(struct evdns_base * base)3000 evdns_base_search_clear(struct evdns_base *base)
3001 {
3002 	EVDNS_LOCK(base);
3003 	search_postfix_clear(base);
3004 	EVDNS_UNLOCK(base);
3005 }
3006 
3007 void
evdns_search_clear(void)3008 evdns_search_clear(void) {
3009 	evdns_base_search_clear(current_base);
3010 }
3011 
3012 static void
search_postfix_add(struct evdns_base * base,const char * domain)3013 search_postfix_add(struct evdns_base *base, const char *domain) {
3014 	size_t domain_len;
3015 	struct search_domain *sdomain;
3016 	while (domain[0] == '.') domain++;
3017 	domain_len = strlen(domain);
3018 
3019 	ASSERT_LOCKED(base);
3020 	if (!base->global_search_state) base->global_search_state = search_state_new();
3021 	if (!base->global_search_state) return;
3022 	base->global_search_state->num_domains++;
3023 
3024 	sdomain = (struct search_domain *) mm_malloc(sizeof(struct search_domain) + domain_len);
3025 	if (!sdomain) return;
3026 	memcpy( ((u8 *) sdomain) + sizeof(struct search_domain), domain, domain_len);
3027 	sdomain->next = base->global_search_state->head;
3028 	sdomain->len = (int) domain_len;
3029 
3030 	base->global_search_state->head = sdomain;
3031 }
3032 
3033 /* reverse the order of members in the postfix list. This is needed because, */
3034 /* when parsing resolv.conf we push elements in the wrong order */
3035 static void
search_reverse(struct evdns_base * base)3036 search_reverse(struct evdns_base *base) {
3037 	struct search_domain *cur, *prev = NULL, *next;
3038 	ASSERT_LOCKED(base);
3039 	cur = base->global_search_state->head;
3040 	while (cur) {
3041 		next = cur->next;
3042 		cur->next = prev;
3043 		prev = cur;
3044 		cur = next;
3045 	}
3046 
3047 	base->global_search_state->head = prev;
3048 }
3049 
3050 /* exported function */
3051 void
evdns_base_search_add(struct evdns_base * base,const char * domain)3052 evdns_base_search_add(struct evdns_base *base, const char *domain) {
3053 	EVDNS_LOCK(base);
3054 	search_postfix_add(base, domain);
3055 	EVDNS_UNLOCK(base);
3056 }
3057 void
evdns_search_add(const char * domain)3058 evdns_search_add(const char *domain) {
3059 	evdns_base_search_add(current_base, domain);
3060 }
3061 
3062 /* exported function */
3063 void
evdns_base_search_ndots_set(struct evdns_base * base,const int ndots)3064 evdns_base_search_ndots_set(struct evdns_base *base, const int ndots) {
3065 	EVDNS_LOCK(base);
3066 	if (!base->global_search_state) base->global_search_state = search_state_new();
3067 	if (base->global_search_state)
3068 		base->global_search_state->ndots = ndots;
3069 	EVDNS_UNLOCK(base);
3070 }
3071 void
evdns_search_ndots_set(const int ndots)3072 evdns_search_ndots_set(const int ndots) {
3073 	evdns_base_search_ndots_set(current_base, ndots);
3074 }
3075 
3076 static void
search_set_from_hostname(struct evdns_base * base)3077 search_set_from_hostname(struct evdns_base *base) {
3078 	char hostname[HOST_NAME_MAX + 1], *domainname;
3079 
3080 	ASSERT_LOCKED(base);
3081 	search_postfix_clear(base);
3082 	if (gethostname(hostname, sizeof(hostname))) return;
3083 	domainname = strchr(hostname, '.');
3084 	if (!domainname) return;
3085 	search_postfix_add(base, domainname);
3086 }
3087 
3088 /* warning: returns malloced string */
3089 static char *
search_make_new(const struct search_state * const state,int n,const char * const base_name)3090 search_make_new(const struct search_state *const state, int n, const char *const base_name) {
3091 	const size_t base_len = strlen(base_name);
3092 	const char need_to_append_dot = base_name[base_len - 1] == '.' ? 0 : 1;
3093 	struct search_domain *dom;
3094 
3095 	for (dom = state->head; dom; dom = dom->next) {
3096 		if (!n--) {
3097 			/* this is the postfix we want */
3098 			/* the actual postfix string is kept at the end of the structure */
3099 			const u8 *const postfix = ((u8 *) dom) + sizeof(struct search_domain);
3100 			const int postfix_len = dom->len;
3101 			char *const newname = (char *) mm_malloc(base_len + need_to_append_dot + postfix_len + 1);
3102 			if (!newname) return NULL;
3103 			memcpy(newname, base_name, base_len);
3104 			if (need_to_append_dot) newname[base_len] = '.';
3105 			memcpy(newname + base_len + need_to_append_dot, postfix, postfix_len);
3106 			newname[base_len + need_to_append_dot + postfix_len] = 0;
3107 			return newname;
3108 		}
3109 	}
3110 
3111 	/* we ran off the end of the list and still didn't find the requested string */
3112 	EVUTIL_ASSERT(0);
3113 	return NULL; /* unreachable; stops warnings in some compilers. */
3114 }
3115 
3116 static struct request *
search_request_new(struct evdns_base * base,struct evdns_request * handle,int type,const char * const name,int flags,evdns_callback_type user_callback,void * user_arg)3117 search_request_new(struct evdns_base *base, struct evdns_request *handle,
3118 		   int type, const char *const name, int flags,
3119 		   evdns_callback_type user_callback, void *user_arg) {
3120 	ASSERT_LOCKED(base);
3121 	EVUTIL_ASSERT(type == TYPE_A || type == TYPE_AAAA);
3122 	EVUTIL_ASSERT(handle->current_req == NULL);
3123 	if ( ((flags & DNS_QUERY_NO_SEARCH) == 0) &&
3124 	     base->global_search_state &&
3125 		 base->global_search_state->num_domains) {
3126 		/* we have some domains to search */
3127 		struct request *req;
3128 		if (string_num_dots(name) >= base->global_search_state->ndots) {
3129 			req = request_new(base, handle, type, name, flags, user_callback, user_arg);
3130 			if (!req) return NULL;
3131 			handle->search_index = -1;
3132 		} else {
3133 			char *const new_name = search_make_new(base->global_search_state, 0, name);
3134 			if (!new_name) return NULL;
3135 			req = request_new(base, handle, type, new_name, flags, user_callback, user_arg);
3136 			mm_free(new_name);
3137 			if (!req) return NULL;
3138 			handle->search_index = 0;
3139 		}
3140 		EVUTIL_ASSERT(handle->search_origname == NULL);
3141 		handle->search_origname = mm_strdup(name);
3142 		if (handle->search_origname == NULL) {
3143 			/* XXX Should we dealloc req? If yes, how? */
3144 			return NULL;
3145 		}
3146 		handle->search_state = base->global_search_state;
3147 		handle->search_flags = flags;
3148 		base->global_search_state->refcount++;
3149 		request_submit(req);
3150 		return req;
3151 	} else {
3152 		struct request *const req = request_new(base, handle, type, name, flags, user_callback, user_arg);
3153 		if (!req) return NULL;
3154 		request_submit(req);
3155 		return req;
3156 	}
3157 }
3158 
3159 /* this is called when a request has failed to find a name. We need to check */
3160 /* if it is part of a search and, if so, try the next name in the list */
3161 /* returns: */
3162 /*   0 another request has been submitted */
3163 /*   1 no more requests needed */
3164 static int
search_try_next(struct evdns_request * const handle)3165 search_try_next(struct evdns_request *const handle) {
3166 	struct request *req = handle->current_req;
3167 	struct evdns_base *base = req->base;
3168 	struct request *newreq;
3169 	ASSERT_LOCKED(base);
3170 	if (handle->search_state) {
3171 		/* it is part of a search */
3172 		char *new_name;
3173 		handle->search_index++;
3174 		if (handle->search_index >= handle->search_state->num_domains) {
3175 			/* no more postfixes to try, however we may need to try */
3176 			/* this name without a postfix */
3177 			if (string_num_dots(handle->search_origname) < handle->search_state->ndots) {
3178 				/* yep, we need to try it raw */
3179 				newreq = request_new(base, NULL, req->request_type, handle->search_origname, handle->search_flags, req->user_callback, req->user_pointer);
3180 				log(EVDNS_LOG_DEBUG, "Search: trying raw query %s", handle->search_origname);
3181 				if (newreq) {
3182 					search_request_finished(handle);
3183 					goto submit_next;
3184 				}
3185 			}
3186 			return 1;
3187 		}
3188 
3189 		new_name = search_make_new(handle->search_state, handle->search_index, handle->search_origname);
3190 		if (!new_name) return 1;
3191 		log(EVDNS_LOG_DEBUG, "Search: now trying %s (%d)", new_name, handle->search_index);
3192 		newreq = request_new(base, NULL, req->request_type, new_name, handle->search_flags, req->user_callback, req->user_pointer);
3193 		mm_free(new_name);
3194 		if (!newreq) return 1;
3195 		goto submit_next;
3196 	}
3197 	return 1;
3198 
3199 submit_next:
3200 	request_finished(req, &REQ_HEAD(req->base, req->trans_id), 0);
3201 	handle->current_req = newreq;
3202 	newreq->handle = handle;
3203 	request_submit(newreq);
3204 	return 0;
3205 }
3206 
3207 static void
search_request_finished(struct evdns_request * const handle)3208 search_request_finished(struct evdns_request *const handle) {
3209 	ASSERT_LOCKED(handle->current_req->base);
3210 	if (handle->search_state) {
3211 		search_state_decref(handle->search_state);
3212 		handle->search_state = NULL;
3213 	}
3214 	if (handle->search_origname) {
3215 		mm_free(handle->search_origname);
3216 		handle->search_origname = NULL;
3217 	}
3218 }
3219 
3220 /* ================================================================= */
3221 /* Parsing resolv.conf files */
3222 
3223 static void
evdns_resolv_set_defaults(struct evdns_base * base,int flags)3224 evdns_resolv_set_defaults(struct evdns_base *base, int flags) {
3225 	/* if the file isn't found then we assume a local resolver */
3226 	ASSERT_LOCKED(base);
3227 	if (flags & DNS_OPTION_SEARCH) search_set_from_hostname(base);
3228 	if (flags & DNS_OPTION_NAMESERVERS) evdns_base_nameserver_ip_add(base,"127.0.0.1");
3229 }
3230 
3231 #ifndef _EVENT_HAVE_STRTOK_R
3232 static char *
strtok_r(char * s,const char * delim,char ** state)3233 strtok_r(char *s, const char *delim, char **state) {
3234 	char *cp, *start;
3235 	start = cp = s ? s : *state;
3236 	if (!cp)
3237 		return NULL;
3238 	while (*cp && !strchr(delim, *cp))
3239 		++cp;
3240 	if (!*cp) {
3241 		if (cp == start)
3242 			return NULL;
3243 		*state = NULL;
3244 		return start;
3245 	} else {
3246 		*cp++ = '\0';
3247 		*state = cp;
3248 		return start;
3249 	}
3250 }
3251 #endif
3252 
3253 /* helper version of atoi which returns -1 on error */
3254 static int
strtoint(const char * const str)3255 strtoint(const char *const str)
3256 {
3257 	char *endptr;
3258 	const int r = strtol(str, &endptr, 10);
3259 	if (*endptr) return -1;
3260 	return r;
3261 }
3262 
3263 /* Parse a number of seconds into a timeval; return -1 on error. */
3264 static int
strtotimeval(const char * const str,struct timeval * out)3265 strtotimeval(const char *const str, struct timeval *out)
3266 {
3267 	double d;
3268 	char *endptr;
3269 	d = strtod(str, &endptr);
3270 	if (*endptr) return -1;
3271 	if (d < 0) return -1;
3272 	out->tv_sec = (int) d;
3273 	out->tv_usec = (int) ((d - (int) d)*1000000);
3274 	if (out->tv_sec == 0 && out->tv_usec < 1000) /* less than 1 msec */
3275 		return -1;
3276 	return 0;
3277 }
3278 
3279 /* helper version of atoi that returns -1 on error and clips to bounds. */
3280 static int
strtoint_clipped(const char * const str,int min,int max)3281 strtoint_clipped(const char *const str, int min, int max)
3282 {
3283 	int r = strtoint(str);
3284 	if (r == -1)
3285 		return r;
3286 	else if (r<min)
3287 		return min;
3288 	else if (r>max)
3289 		return max;
3290 	else
3291 		return r;
3292 }
3293 
3294 static int
evdns_base_set_max_requests_inflight(struct evdns_base * base,int maxinflight)3295 evdns_base_set_max_requests_inflight(struct evdns_base *base, int maxinflight)
3296 {
3297 	int old_n_heads = base->n_req_heads, n_heads;
3298 	struct request **old_heads = base->req_heads, **new_heads, *req;
3299 	int i;
3300 
3301 	ASSERT_LOCKED(base);
3302 	if (maxinflight < 1)
3303 		maxinflight = 1;
3304 	n_heads = (maxinflight+4) / 5;
3305 	EVUTIL_ASSERT(n_heads > 0);
3306 	new_heads = mm_calloc(n_heads, sizeof(struct request*));
3307 	if (!new_heads)
3308 		return (-1);
3309 	if (old_heads) {
3310 		for (i = 0; i < old_n_heads; ++i) {
3311 			while (old_heads[i]) {
3312 				req = old_heads[i];
3313 				evdns_request_remove(req, &old_heads[i]);
3314 				evdns_request_insert(req, &new_heads[req->trans_id % n_heads]);
3315 			}
3316 		}
3317 		mm_free(old_heads);
3318 	}
3319 	base->req_heads = new_heads;
3320 	base->n_req_heads = n_heads;
3321 	base->global_max_requests_inflight = maxinflight;
3322 	return (0);
3323 }
3324 
3325 /* exported function */
3326 int
evdns_base_set_option(struct evdns_base * base,const char * option,const char * val)3327 evdns_base_set_option(struct evdns_base *base,
3328     const char *option, const char *val)
3329 {
3330 	int res;
3331 	EVDNS_LOCK(base);
3332 	res = evdns_base_set_option_impl(base, option, val, DNS_OPTIONS_ALL);
3333 	EVDNS_UNLOCK(base);
3334 	return res;
3335 }
3336 
3337 static inline int
str_matches_option(const char * s1,const char * optionname)3338 str_matches_option(const char *s1, const char *optionname)
3339 {
3340 	/* Option names are given as "option:" We accept either 'option' in
3341 	 * s1, or 'option:randomjunk'.  The latter form is to implement the
3342 	 * resolv.conf parser. */
3343 	size_t optlen = strlen(optionname);
3344 	size_t slen = strlen(s1);
3345 	if (slen == optlen || slen == optlen - 1)
3346 		return !strncmp(s1, optionname, slen);
3347 	else if (slen > optlen)
3348 		return !strncmp(s1, optionname, optlen);
3349 	else
3350 		return 0;
3351 }
3352 
3353 static int
evdns_base_set_option_impl(struct evdns_base * base,const char * option,const char * val,int flags)3354 evdns_base_set_option_impl(struct evdns_base *base,
3355     const char *option, const char *val, int flags)
3356 {
3357 	ASSERT_LOCKED(base);
3358 	if (str_matches_option(option, "ndots:")) {
3359 		const int ndots = strtoint(val);
3360 		if (ndots == -1) return -1;
3361 		if (!(flags & DNS_OPTION_SEARCH)) return 0;
3362 		log(EVDNS_LOG_DEBUG, "Setting ndots to %d", ndots);
3363 		if (!base->global_search_state) base->global_search_state = search_state_new();
3364 		if (!base->global_search_state) return -1;
3365 		base->global_search_state->ndots = ndots;
3366 	} else if (str_matches_option(option, "timeout:")) {
3367 		struct timeval tv;
3368 		if (strtotimeval(val, &tv) == -1) return -1;
3369 		if (!(flags & DNS_OPTION_MISC)) return 0;
3370 		log(EVDNS_LOG_DEBUG, "Setting timeout to %s", val);
3371 		memcpy(&base->global_timeout, &tv, sizeof(struct timeval));
3372 	} else if (str_matches_option(option, "getaddrinfo-allow-skew:")) {
3373 		struct timeval tv;
3374 		if (strtotimeval(val, &tv) == -1) return -1;
3375 		if (!(flags & DNS_OPTION_MISC)) return 0;
3376 		log(EVDNS_LOG_DEBUG, "Setting getaddrinfo-allow-skew to %s",
3377 		    val);
3378 		memcpy(&base->global_getaddrinfo_allow_skew, &tv,
3379 		    sizeof(struct timeval));
3380 	} else if (str_matches_option(option, "max-timeouts:")) {
3381 		const int maxtimeout = strtoint_clipped(val, 1, 255);
3382 		if (maxtimeout == -1) return -1;
3383 		if (!(flags & DNS_OPTION_MISC)) return 0;
3384 		log(EVDNS_LOG_DEBUG, "Setting maximum allowed timeouts to %d",
3385 			maxtimeout);
3386 		base->global_max_nameserver_timeout = maxtimeout;
3387 	} else if (str_matches_option(option, "max-inflight:")) {
3388 		const int maxinflight = strtoint_clipped(val, 1, 65000);
3389 		if (maxinflight == -1) return -1;
3390 		if (!(flags & DNS_OPTION_MISC)) return 0;
3391 		log(EVDNS_LOG_DEBUG, "Setting maximum inflight requests to %d",
3392 			maxinflight);
3393 		evdns_base_set_max_requests_inflight(base, maxinflight);
3394 	} else if (str_matches_option(option, "attempts:")) {
3395 		int retries = strtoint(val);
3396 		if (retries == -1) return -1;
3397 		if (retries > 255) retries = 255;
3398 		if (!(flags & DNS_OPTION_MISC)) return 0;
3399 		log(EVDNS_LOG_DEBUG, "Setting retries to %d", retries);
3400 		base->global_max_retransmits = retries;
3401 	} else if (str_matches_option(option, "randomize-case:")) {
3402 		int randcase = strtoint(val);
3403 		if (!(flags & DNS_OPTION_MISC)) return 0;
3404 		base->global_randomize_case = randcase;
3405 	} else if (str_matches_option(option, "bind-to:")) {
3406 		/* XXX This only applies to successive nameservers, not
3407 		 * to already-configured ones.	We might want to fix that. */
3408 		int len = sizeof(base->global_outgoing_address);
3409 		if (!(flags & DNS_OPTION_NAMESERVERS)) return 0;
3410 		if (evutil_parse_sockaddr_port(val,
3411 			(struct sockaddr*)&base->global_outgoing_address, &len))
3412 			return -1;
3413 		base->global_outgoing_addrlen = len;
3414 	} else if (str_matches_option(option, "initial-probe-timeout:")) {
3415 		struct timeval tv;
3416 		if (strtotimeval(val, &tv) == -1) return -1;
3417 		if (tv.tv_sec > 3600)
3418 			tv.tv_sec = 3600;
3419 		if (!(flags & DNS_OPTION_MISC)) return 0;
3420 		log(EVDNS_LOG_DEBUG, "Setting initial probe timeout to %s",
3421 		    val);
3422 		memcpy(&base->global_nameserver_probe_initial_timeout, &tv,
3423 		    sizeof(tv));
3424 	}
3425 	return 0;
3426 }
3427 
3428 int
evdns_set_option(const char * option,const char * val,int flags)3429 evdns_set_option(const char *option, const char *val, int flags)
3430 {
3431 	if (!current_base)
3432 		current_base = evdns_base_new(NULL, 0);
3433 	return evdns_base_set_option(current_base, option, val);
3434 }
3435 
3436 static void
resolv_conf_parse_line(struct evdns_base * base,char * const start,int flags)3437 resolv_conf_parse_line(struct evdns_base *base, char *const start, int flags) {
3438 	char *strtok_state;
3439 	static const char *const delims = " \t";
3440 #define NEXT_TOKEN strtok_r(NULL, delims, &strtok_state)
3441 
3442 
3443 	char *const first_token = strtok_r(start, delims, &strtok_state);
3444 	ASSERT_LOCKED(base);
3445 	if (!first_token) return;
3446 
3447 	if (!strcmp(first_token, "nameserver") && (flags & DNS_OPTION_NAMESERVERS)) {
3448 		const char *const nameserver = NEXT_TOKEN;
3449 
3450 		if (nameserver)
3451 			evdns_base_nameserver_ip_add(base, nameserver);
3452 	} else if (!strcmp(first_token, "domain") && (flags & DNS_OPTION_SEARCH)) {
3453 		const char *const domain = NEXT_TOKEN;
3454 		if (domain) {
3455 			search_postfix_clear(base);
3456 			search_postfix_add(base, domain);
3457 		}
3458 	} else if (!strcmp(first_token, "search") && (flags & DNS_OPTION_SEARCH)) {
3459 		const char *domain;
3460 		search_postfix_clear(base);
3461 
3462 		while ((domain = NEXT_TOKEN)) {
3463 			search_postfix_add(base, domain);
3464 		}
3465 		search_reverse(base);
3466 	} else if (!strcmp(first_token, "options")) {
3467 		const char *option;
3468 		while ((option = NEXT_TOKEN)) {
3469 			const char *val = strchr(option, ':');
3470 			evdns_base_set_option_impl(base, option, val ? val+1 : "", flags);
3471 		}
3472 	}
3473 #undef NEXT_TOKEN
3474 }
3475 
3476 /* exported function */
3477 /* returns: */
3478 /*   0 no errors */
3479 /*   1 failed to open file */
3480 /*   2 failed to stat file */
3481 /*   3 file too large */
3482 /*   4 out of memory */
3483 /*   5 short read from file */
3484 int
evdns_base_resolv_conf_parse(struct evdns_base * base,int flags,const char * const filename)3485 evdns_base_resolv_conf_parse(struct evdns_base *base, int flags, const char *const filename) {
3486 	int res;
3487 	EVDNS_LOCK(base);
3488 	res = evdns_base_resolv_conf_parse_impl(base, flags, filename);
3489 	EVDNS_UNLOCK(base);
3490 	return res;
3491 }
3492 
3493 static char *
evdns_get_default_hosts_filename(void)3494 evdns_get_default_hosts_filename(void)
3495 {
3496 #ifdef WIN32
3497 	/* Windows is a little coy about where it puts its configuration
3498 	 * files.  Sure, they're _usually_ in C:\windows\system32, but
3499 	 * there's no reason in principle they couldn't be in
3500 	 * W:\hoboken chicken emergency\
3501 	 */
3502 	char path[MAX_PATH+1];
3503 	static const char hostfile[] = "\\drivers\\etc\\hosts";
3504 	char *path_out;
3505 	size_t len_out;
3506 
3507 	if (! SHGetSpecialFolderPathA(NULL, path, CSIDL_SYSTEM, 0))
3508 		return NULL;
3509 	len_out = strlen(path)+strlen(hostfile);
3510 	path_out = mm_malloc(len_out+1);
3511 	evutil_snprintf(path_out, len_out, "%s%s", path, hostfile);
3512 	return path_out;
3513 #else
3514 	return mm_strdup("/etc/hosts");
3515 #endif
3516 }
3517 
3518 static int
evdns_base_resolv_conf_parse_impl(struct evdns_base * base,int flags,const char * const filename)3519 evdns_base_resolv_conf_parse_impl(struct evdns_base *base, int flags, const char *const filename) {
3520 	size_t n;
3521 	char *resolv;
3522 	char *start;
3523 	int err = 0;
3524 
3525 	log(EVDNS_LOG_DEBUG, "Parsing resolv.conf file %s", filename);
3526 
3527 	if (flags & DNS_OPTION_HOSTSFILE) {
3528 		char *fname = evdns_get_default_hosts_filename();
3529 		evdns_base_load_hosts(base, fname);
3530 		if (fname)
3531 			mm_free(fname);
3532 	}
3533 
3534 	if ((err = evutil_read_file(filename, &resolv, &n, 0)) < 0) {
3535 		if (err == -1) {
3536 			/* No file. */
3537 			evdns_resolv_set_defaults(base, flags);
3538 			return 1;
3539 		} else {
3540 			return 2;
3541 		}
3542 	}
3543 
3544 	start = resolv;
3545 	for (;;) {
3546 		char *const newline = strchr(start, '\n');
3547 		if (!newline) {
3548 			resolv_conf_parse_line(base, start, flags);
3549 			break;
3550 		} else {
3551 			*newline = 0;
3552 			resolv_conf_parse_line(base, start, flags);
3553 			start = newline + 1;
3554 		}
3555 	}
3556 
3557 	if (!base->server_head && (flags & DNS_OPTION_NAMESERVERS)) {
3558 		/* no nameservers were configured. */
3559 		evdns_base_nameserver_ip_add(base, "127.0.0.1");
3560 		err = 6;
3561 	}
3562 	if (flags & DNS_OPTION_SEARCH && (!base->global_search_state || base->global_search_state->num_domains == 0)) {
3563 		search_set_from_hostname(base);
3564 	}
3565 
3566 	mm_free(resolv);
3567 	return err;
3568 }
3569 
3570 int
evdns_resolv_conf_parse(int flags,const char * const filename)3571 evdns_resolv_conf_parse(int flags, const char *const filename) {
3572 	if (!current_base)
3573 		current_base = evdns_base_new(NULL, 0);
3574 	return evdns_base_resolv_conf_parse(current_base, flags, filename);
3575 }
3576 
3577 
3578 #ifdef WIN32
3579 /* Add multiple nameservers from a space-or-comma-separated list. */
3580 static int
evdns_nameserver_ip_add_line(struct evdns_base * base,const char * ips)3581 evdns_nameserver_ip_add_line(struct evdns_base *base, const char *ips) {
3582 	const char *addr;
3583 	char *buf;
3584 	int r;
3585 	ASSERT_LOCKED(base);
3586 	while (*ips) {
3587 		while (isspace(*ips) || *ips == ',' || *ips == '\t')
3588 			++ips;
3589 		addr = ips;
3590 		while (isdigit(*ips) || *ips == '.' || *ips == ':' ||
3591 		    *ips=='[' || *ips==']')
3592 			++ips;
3593 		buf = mm_malloc(ips-addr+1);
3594 		if (!buf) return 4;
3595 		memcpy(buf, addr, ips-addr);
3596 		buf[ips-addr] = '\0';
3597 		r = evdns_base_nameserver_ip_add(base, buf);
3598 		mm_free(buf);
3599 		if (r) return r;
3600 	}
3601 	return 0;
3602 }
3603 
3604 typedef DWORD(WINAPI *GetNetworkParams_fn_t)(FIXED_INFO *, DWORD*);
3605 
3606 /* Use the windows GetNetworkParams interface in iphlpapi.dll to */
3607 /* figure out what our nameservers are. */
3608 static int
load_nameservers_with_getnetworkparams(struct evdns_base * base)3609 load_nameservers_with_getnetworkparams(struct evdns_base *base)
3610 {
3611 	/* Based on MSDN examples and inspection of  c-ares code. */
3612 	FIXED_INFO *fixed;
3613 	HMODULE handle = 0;
3614 	ULONG size = sizeof(FIXED_INFO);
3615 	void *buf = NULL;
3616 	int status = 0, r, added_any;
3617 	IP_ADDR_STRING *ns;
3618 	GetNetworkParams_fn_t fn;
3619 
3620 	ASSERT_LOCKED(base);
3621 	if (!(handle = evutil_load_windows_system_library(
3622 			TEXT("iphlpapi.dll")))) {
3623 		log(EVDNS_LOG_WARN, "Could not open iphlpapi.dll");
3624 		status = -1;
3625 		goto done;
3626 	}
3627 	if (!(fn = (GetNetworkParams_fn_t) GetProcAddress(handle, "GetNetworkParams"))) {
3628 		log(EVDNS_LOG_WARN, "Could not get address of function.");
3629 		status = -1;
3630 		goto done;
3631 	}
3632 
3633 	buf = mm_malloc(size);
3634 	if (!buf) { status = 4; goto done; }
3635 	fixed = buf;
3636 	r = fn(fixed, &size);
3637 	if (r != ERROR_SUCCESS && r != ERROR_BUFFER_OVERFLOW) {
3638 		status = -1;
3639 		goto done;
3640 	}
3641 	if (r != ERROR_SUCCESS) {
3642 		mm_free(buf);
3643 		buf = mm_malloc(size);
3644 		if (!buf) { status = 4; goto done; }
3645 		fixed = buf;
3646 		r = fn(fixed, &size);
3647 		if (r != ERROR_SUCCESS) {
3648 			log(EVDNS_LOG_DEBUG, "fn() failed.");
3649 			status = -1;
3650 			goto done;
3651 		}
3652 	}
3653 
3654 	EVUTIL_ASSERT(fixed);
3655 	added_any = 0;
3656 	ns = &(fixed->DnsServerList);
3657 	while (ns) {
3658 		r = evdns_nameserver_ip_add_line(base, ns->IpAddress.String);
3659 		if (r) {
3660 			log(EVDNS_LOG_DEBUG,"Could not add nameserver %s to list,error: %d",
3661 				(ns->IpAddress.String),(int)GetLastError());
3662 			status = r;
3663 		} else {
3664 			++added_any;
3665 			log(EVDNS_LOG_DEBUG,"Successfully added %s as nameserver",ns->IpAddress.String);
3666 		}
3667 
3668 		ns = ns->Next;
3669 	}
3670 
3671 	if (!added_any) {
3672 		log(EVDNS_LOG_DEBUG, "No nameservers added.");
3673 		if (status == 0)
3674 			status = -1;
3675 	} else {
3676 		status = 0;
3677 	}
3678 
3679  done:
3680 	if (buf)
3681 		mm_free(buf);
3682 	if (handle)
3683 		FreeLibrary(handle);
3684 	return status;
3685 }
3686 
3687 static int
config_nameserver_from_reg_key(struct evdns_base * base,HKEY key,const TCHAR * subkey)3688 config_nameserver_from_reg_key(struct evdns_base *base, HKEY key, const TCHAR *subkey)
3689 {
3690 	char *buf;
3691 	DWORD bufsz = 0, type = 0;
3692 	int status = 0;
3693 
3694 	ASSERT_LOCKED(base);
3695 	if (RegQueryValueEx(key, subkey, 0, &type, NULL, &bufsz)
3696 	    != ERROR_MORE_DATA)
3697 		return -1;
3698 	if (!(buf = mm_malloc(bufsz)))
3699 		return -1;
3700 
3701 	if (RegQueryValueEx(key, subkey, 0, &type, (LPBYTE)buf, &bufsz)
3702 	    == ERROR_SUCCESS && bufsz > 1) {
3703 		status = evdns_nameserver_ip_add_line(base,buf);
3704 	}
3705 
3706 	mm_free(buf);
3707 	return status;
3708 }
3709 
3710 #define SERVICES_KEY TEXT("System\\CurrentControlSet\\Services\\")
3711 #define WIN_NS_9X_KEY  SERVICES_KEY TEXT("VxD\\MSTCP")
3712 #define WIN_NS_NT_KEY  SERVICES_KEY TEXT("Tcpip\\Parameters")
3713 
3714 static int
load_nameservers_from_registry(struct evdns_base * base)3715 load_nameservers_from_registry(struct evdns_base *base)
3716 {
3717 	int found = 0;
3718 	int r;
3719 #define TRY(k, name) \
3720 	if (!found && config_nameserver_from_reg_key(base,k,TEXT(name)) == 0) { \
3721 		log(EVDNS_LOG_DEBUG,"Found nameservers in %s/%s",#k,name); \
3722 		found = 1;						\
3723 	} else if (!found) {						\
3724 		log(EVDNS_LOG_DEBUG,"Didn't find nameservers in %s/%s", \
3725 		    #k,#name);						\
3726 	}
3727 
3728 	ASSERT_LOCKED(base);
3729 
3730 	if (((int)GetVersion()) > 0) { /* NT */
3731 		HKEY nt_key = 0, interfaces_key = 0;
3732 
3733 		if (RegOpenKeyEx(HKEY_LOCAL_MACHINE, WIN_NS_NT_KEY, 0,
3734 				 KEY_READ, &nt_key) != ERROR_SUCCESS) {
3735 			log(EVDNS_LOG_DEBUG,"Couldn't open nt key, %d",(int)GetLastError());
3736 			return -1;
3737 		}
3738 		r = RegOpenKeyEx(nt_key, TEXT("Interfaces"), 0,
3739 			     KEY_QUERY_VALUE|KEY_ENUMERATE_SUB_KEYS,
3740 			     &interfaces_key);
3741 		if (r != ERROR_SUCCESS) {
3742 			log(EVDNS_LOG_DEBUG,"Couldn't open interfaces key, %d",(int)GetLastError());
3743 			return -1;
3744 		}
3745 		TRY(nt_key, "NameServer");
3746 		TRY(nt_key, "DhcpNameServer");
3747 		TRY(interfaces_key, "NameServer");
3748 		TRY(interfaces_key, "DhcpNameServer");
3749 		RegCloseKey(interfaces_key);
3750 		RegCloseKey(nt_key);
3751 	} else {
3752 		HKEY win_key = 0;
3753 		if (RegOpenKeyEx(HKEY_LOCAL_MACHINE, WIN_NS_9X_KEY, 0,
3754 				 KEY_READ, &win_key) != ERROR_SUCCESS) {
3755 			log(EVDNS_LOG_DEBUG, "Couldn't open registry key, %d", (int)GetLastError());
3756 			return -1;
3757 		}
3758 		TRY(win_key, "NameServer");
3759 		RegCloseKey(win_key);
3760 	}
3761 
3762 	if (found == 0) {
3763 		log(EVDNS_LOG_WARN,"Didn't find any nameservers.");
3764 	}
3765 
3766 	return found ? 0 : -1;
3767 #undef TRY
3768 }
3769 
3770 int
evdns_base_config_windows_nameservers(struct evdns_base * base)3771 evdns_base_config_windows_nameservers(struct evdns_base *base)
3772 {
3773 	int r;
3774 	char *fname;
3775 	if (base == NULL)
3776 		base = current_base;
3777 	if (base == NULL)
3778 		return -1;
3779 	EVDNS_LOCK(base);
3780 	if (load_nameservers_with_getnetworkparams(base) == 0) {
3781 		EVDNS_UNLOCK(base);
3782 		return 0;
3783 	}
3784 	r = load_nameservers_from_registry(base);
3785 
3786 	fname = evdns_get_default_hosts_filename();
3787 	evdns_base_load_hosts(base, fname);
3788 	if (fname)
3789 		mm_free(fname);
3790 
3791 	EVDNS_UNLOCK(base);
3792 	return r;
3793 }
3794 
3795 int
evdns_config_windows_nameservers(void)3796 evdns_config_windows_nameservers(void)
3797 {
3798 	if (!current_base) {
3799 		current_base = evdns_base_new(NULL, 1);
3800 		return current_base == NULL ? -1 : 0;
3801 	} else {
3802 		return evdns_base_config_windows_nameservers(current_base);
3803 	}
3804 }
3805 #endif
3806 
3807 struct evdns_base *
evdns_base_new(struct event_base * event_base,int initialize_nameservers)3808 evdns_base_new(struct event_base *event_base, int initialize_nameservers)
3809 {
3810 	struct evdns_base *base;
3811 
3812 	if (evutil_secure_rng_init() < 0) {
3813 		log(EVDNS_LOG_WARN, "Unable to seed random number generator; "
3814 		    "DNS can't run.");
3815 		return NULL;
3816 	}
3817 
3818 	/* Give the evutil library a hook into its evdns-enabled
3819 	 * functionality.  We can't just call evdns_getaddrinfo directly or
3820 	 * else libevent-core will depend on libevent-extras. */
3821 	evutil_set_evdns_getaddrinfo_fn(evdns_getaddrinfo);
3822 
3823 	base = mm_malloc(sizeof(struct evdns_base));
3824 	if (base == NULL)
3825 		return (NULL);
3826 	memset(base, 0, sizeof(struct evdns_base));
3827 	base->req_waiting_head = NULL;
3828 
3829 	EVTHREAD_ALLOC_LOCK(base->lock, EVTHREAD_LOCKTYPE_RECURSIVE);
3830 	EVDNS_LOCK(base);
3831 
3832 	/* Set max requests inflight and allocate req_heads. */
3833 	base->req_heads = NULL;
3834 
3835 	evdns_base_set_max_requests_inflight(base, 64);
3836 
3837 	base->server_head = NULL;
3838 	base->event_base = event_base;
3839 	base->global_good_nameservers = base->global_requests_inflight =
3840 		base->global_requests_waiting = 0;
3841 
3842 	base->global_timeout.tv_sec = 5;
3843 	base->global_timeout.tv_usec = 0;
3844 	base->global_max_reissues = 1;
3845 	base->global_max_retransmits = 3;
3846 	base->global_max_nameserver_timeout = 3;
3847 	base->global_search_state = NULL;
3848 	base->global_randomize_case = 1;
3849 	base->global_getaddrinfo_allow_skew.tv_sec = 3;
3850 	base->global_getaddrinfo_allow_skew.tv_usec = 0;
3851 	base->global_nameserver_probe_initial_timeout.tv_sec = 10;
3852 	base->global_nameserver_probe_initial_timeout.tv_usec = 0;
3853 
3854 	TAILQ_INIT(&base->hostsdb);
3855 
3856 	if (initialize_nameservers) {
3857 		int r;
3858 #ifdef WIN32
3859 		r = evdns_base_config_windows_nameservers(base);
3860 #else
3861 		r = evdns_base_resolv_conf_parse(base, DNS_OPTIONS_ALL, "/etc/resolv.conf");
3862 #endif
3863 		if (r == -1) {
3864 			evdns_base_free_and_unlock(base, 0);
3865 			return NULL;
3866 		}
3867 	}
3868 	EVDNS_UNLOCK(base);
3869 	return base;
3870 }
3871 
3872 int
evdns_init(void)3873 evdns_init(void)
3874 {
3875 	struct evdns_base *base = evdns_base_new(NULL, 1);
3876 	if (base) {
3877 		current_base = base;
3878 		return 0;
3879 	} else {
3880 		return -1;
3881 	}
3882 }
3883 
3884 const char *
evdns_err_to_string(int err)3885 evdns_err_to_string(int err)
3886 {
3887     switch (err) {
3888 	case DNS_ERR_NONE: return "no error";
3889 	case DNS_ERR_FORMAT: return "misformatted query";
3890 	case DNS_ERR_SERVERFAILED: return "server failed";
3891 	case DNS_ERR_NOTEXIST: return "name does not exist";
3892 	case DNS_ERR_NOTIMPL: return "query not implemented";
3893 	case DNS_ERR_REFUSED: return "refused";
3894 
3895 	case DNS_ERR_TRUNCATED: return "reply truncated or ill-formed";
3896 	case DNS_ERR_UNKNOWN: return "unknown";
3897 	case DNS_ERR_TIMEOUT: return "request timed out";
3898 	case DNS_ERR_SHUTDOWN: return "dns subsystem shut down";
3899 	case DNS_ERR_CANCEL: return "dns request canceled";
3900 	case DNS_ERR_NODATA: return "no records in the reply";
3901 	default: return "[Unknown error code]";
3902     }
3903 }
3904 
3905 static void
evdns_nameserver_free(struct nameserver * server)3906 evdns_nameserver_free(struct nameserver *server)
3907 {
3908 	if (server->socket >= 0)
3909 	evutil_closesocket(server->socket);
3910 	(void) event_del(&server->event);
3911 	event_debug_unassign(&server->event);
3912 	if (server->state == 0)
3913 		(void) event_del(&server->timeout_event);
3914 	event_debug_unassign(&server->timeout_event);
3915 	mm_free(server);
3916 }
3917 
3918 static void
evdns_base_free_and_unlock(struct evdns_base * base,int fail_requests)3919 evdns_base_free_and_unlock(struct evdns_base *base, int fail_requests)
3920 {
3921 	struct nameserver *server, *server_next;
3922 	struct search_domain *dom, *dom_next;
3923 	int i;
3924 
3925 	/* Requires that we hold the lock. */
3926 
3927 	/* TODO(nickm) we might need to refcount here. */
3928 
3929 	for (i = 0; i < base->n_req_heads; ++i) {
3930 		while (base->req_heads[i]) {
3931 			if (fail_requests)
3932 				reply_schedule_callback(base->req_heads[i], 0, DNS_ERR_SHUTDOWN, NULL);
3933 			request_finished(base->req_heads[i], &REQ_HEAD(base, base->req_heads[i]->trans_id), 1);
3934 		}
3935 	}
3936 	while (base->req_waiting_head) {
3937 		if (fail_requests)
3938 			reply_schedule_callback(base->req_waiting_head, 0, DNS_ERR_SHUTDOWN, NULL);
3939 		request_finished(base->req_waiting_head, &base->req_waiting_head, 1);
3940 	}
3941 	base->global_requests_inflight = base->global_requests_waiting = 0;
3942 
3943 	for (server = base->server_head; server; server = server_next) {
3944 		server_next = server->next;
3945 		evdns_nameserver_free(server);
3946 		if (server_next == base->server_head)
3947 			break;
3948 	}
3949 	base->server_head = NULL;
3950 	base->global_good_nameservers = 0;
3951 
3952 	if (base->global_search_state) {
3953 		for (dom = base->global_search_state->head; dom; dom = dom_next) {
3954 			dom_next = dom->next;
3955 			mm_free(dom);
3956 		}
3957 		mm_free(base->global_search_state);
3958 		base->global_search_state = NULL;
3959 	}
3960 
3961 	{
3962 		struct hosts_entry *victim;
3963 		while ((victim = TAILQ_FIRST(&base->hostsdb))) {
3964 			TAILQ_REMOVE(&base->hostsdb, victim, next);
3965 			mm_free(victim);
3966 		}
3967 	}
3968 
3969 	mm_free(base->req_heads);
3970 
3971 	EVDNS_UNLOCK(base);
3972 	EVTHREAD_FREE_LOCK(base->lock, EVTHREAD_LOCKTYPE_RECURSIVE);
3973 
3974 	mm_free(base);
3975 }
3976 
3977 void
evdns_base_free(struct evdns_base * base,int fail_requests)3978 evdns_base_free(struct evdns_base *base, int fail_requests)
3979 {
3980 	EVDNS_LOCK(base);
3981 	evdns_base_free_and_unlock(base, fail_requests);
3982 }
3983 
3984 void
evdns_shutdown(int fail_requests)3985 evdns_shutdown(int fail_requests)
3986 {
3987 	if (current_base) {
3988 		struct evdns_base *b = current_base;
3989 		current_base = NULL;
3990 		evdns_base_free(b, fail_requests);
3991 	}
3992 	evdns_log_fn = NULL;
3993 }
3994 
3995 static int
evdns_base_parse_hosts_line(struct evdns_base * base,char * line)3996 evdns_base_parse_hosts_line(struct evdns_base *base, char *line)
3997 {
3998 	char *strtok_state;
3999 	static const char *const delims = " \t";
4000 	char *const addr = strtok_r(line, delims, &strtok_state);
4001 	char *hostname, *hash;
4002 	struct sockaddr_storage ss;
4003 	int socklen = sizeof(ss);
4004 	ASSERT_LOCKED(base);
4005 
4006 #define NEXT_TOKEN strtok_r(NULL, delims, &strtok_state)
4007 
4008 	if (!addr || *addr == '#')
4009 		return 0;
4010 
4011 	memset(&ss, 0, sizeof(ss));
4012 	if (evutil_parse_sockaddr_port(addr, (struct sockaddr*)&ss, &socklen)<0)
4013 		return -1;
4014 	if (socklen > (int)sizeof(struct sockaddr_in6))
4015 		return -1;
4016 
4017 	if (sockaddr_getport((struct sockaddr*)&ss))
4018 		return -1;
4019 
4020 	while ((hostname = NEXT_TOKEN)) {
4021 		struct hosts_entry *he;
4022 		size_t namelen;
4023 		if ((hash = strchr(hostname, '#'))) {
4024 			if (hash == hostname)
4025 				return 0;
4026 			*hash = '\0';
4027 		}
4028 
4029 		namelen = strlen(hostname);
4030 
4031 		he = mm_calloc(1, sizeof(struct hosts_entry)+namelen);
4032 		if (!he)
4033 			return -1;
4034 		EVUTIL_ASSERT(socklen <= (int)sizeof(he->addr));
4035 		memcpy(&he->addr, &ss, socklen);
4036 		memcpy(he->hostname, hostname, namelen+1);
4037 		he->addrlen = socklen;
4038 
4039 		TAILQ_INSERT_TAIL(&base->hostsdb, he, next);
4040 
4041 		if (hash)
4042 			return 0;
4043 	}
4044 
4045 	return 0;
4046 #undef NEXT_TOKEN
4047 }
4048 
4049 static int
evdns_base_load_hosts_impl(struct evdns_base * base,const char * hosts_fname)4050 evdns_base_load_hosts_impl(struct evdns_base *base, const char *hosts_fname)
4051 {
4052 	char *str=NULL, *cp, *eol;
4053 	size_t len;
4054 	int err=0;
4055 
4056 	ASSERT_LOCKED(base);
4057 
4058 	if (hosts_fname == NULL ||
4059 	    (err = evutil_read_file(hosts_fname, &str, &len, 0)) < 0) {
4060 		char tmp[64];
4061 		strlcpy(tmp, "127.0.0.1   localhost", sizeof(tmp));
4062 		evdns_base_parse_hosts_line(base, tmp);
4063 		strlcpy(tmp, "::1   localhost", sizeof(tmp));
4064 		evdns_base_parse_hosts_line(base, tmp);
4065 		return err ? -1 : 0;
4066 	}
4067 
4068 	/* This will break early if there is a NUL in the hosts file.
4069 	 * Probably not a problem.*/
4070 	cp = str;
4071 	for (;;) {
4072 		eol = strchr(cp, '\n');
4073 
4074 		if (eol) {
4075 			*eol = '\0';
4076 			evdns_base_parse_hosts_line(base, cp);
4077 			cp = eol+1;
4078 		} else {
4079 			evdns_base_parse_hosts_line(base, cp);
4080 			break;
4081 		}
4082 	}
4083 
4084 	mm_free(str);
4085 	return 0;
4086 }
4087 
4088 int
evdns_base_load_hosts(struct evdns_base * base,const char * hosts_fname)4089 evdns_base_load_hosts(struct evdns_base *base, const char *hosts_fname)
4090 {
4091 	int res;
4092 	if (!base)
4093 		base = current_base;
4094 	EVDNS_LOCK(base);
4095 	res = evdns_base_load_hosts_impl(base, hosts_fname);
4096 	EVDNS_UNLOCK(base);
4097 	return res;
4098 }
4099 
4100 /* A single request for a getaddrinfo, either v4 or v6. */
4101 struct getaddrinfo_subrequest {
4102 	struct evdns_request *r;
4103 	ev_uint32_t type;
4104 };
4105 
4106 /* State data used to implement an in-progress getaddrinfo. */
4107 struct evdns_getaddrinfo_request {
4108 	struct evdns_base *evdns_base;
4109 	/* Copy of the modified 'hints' data that we'll use to build
4110 	 * answers. */
4111 	struct evutil_addrinfo hints;
4112 	/* The callback to invoke when we're done */
4113 	evdns_getaddrinfo_cb user_cb;
4114 	/* User-supplied data to give to the callback. */
4115 	void *user_data;
4116 	/* The port to use when building sockaddrs. */
4117 	ev_uint16_t port;
4118 	/* The sub_request for an A record (if any) */
4119 	struct getaddrinfo_subrequest ipv4_request;
4120 	/* The sub_request for an AAAA record (if any) */
4121 	struct getaddrinfo_subrequest ipv6_request;
4122 
4123 	/* The cname result that we were told (if any) */
4124 	char *cname_result;
4125 
4126 	/* If we have one request answered and one request still inflight,
4127 	 * then this field holds the answer from the first request... */
4128 	struct evutil_addrinfo *pending_result;
4129 	/* And this event is a timeout that will tell us to cancel the second
4130 	 * request if it's taking a long time. */
4131 	struct event timeout;
4132 
4133 	/* And this field holds the error code from the first request... */
4134 	int pending_error;
4135 	/* If this is set, the user canceled this request. */
4136 	unsigned user_canceled : 1;
4137 	/* If this is set, the user can no longer cancel this request; we're
4138 	 * just waiting for the free. */
4139 	unsigned request_done : 1;
4140 };
4141 
4142 /* Convert an evdns errors to the equivalent getaddrinfo error. */
4143 static int
evdns_err_to_getaddrinfo_err(int e1)4144 evdns_err_to_getaddrinfo_err(int e1)
4145 {
4146 	/* XXX Do this better! */
4147 	if (e1 == DNS_ERR_NONE)
4148 		return 0;
4149 	else if (e1 == DNS_ERR_NOTEXIST)
4150 		return EVUTIL_EAI_NONAME;
4151 	else
4152 		return EVUTIL_EAI_FAIL;
4153 }
4154 
4155 /* Return the more informative of two getaddrinfo errors. */
4156 static int
getaddrinfo_merge_err(int e1,int e2)4157 getaddrinfo_merge_err(int e1, int e2)
4158 {
4159 	/* XXXX be cleverer here. */
4160 	if (e1 == 0)
4161 		return e2;
4162 	else
4163 		return e1;
4164 }
4165 
4166 static void
free_getaddrinfo_request(struct evdns_getaddrinfo_request * data)4167 free_getaddrinfo_request(struct evdns_getaddrinfo_request *data)
4168 {
4169 	/* DO NOT CALL this if either of the requests is pending.  Only once
4170 	 * both callbacks have been invoked is it safe to free the request */
4171 	if (data->pending_result)
4172 		evutil_freeaddrinfo(data->pending_result);
4173 	if (data->cname_result)
4174 		mm_free(data->cname_result);
4175 	event_del(&data->timeout);
4176 	mm_free(data);
4177 	return;
4178 }
4179 
4180 static void
add_cname_to_reply(struct evdns_getaddrinfo_request * data,struct evutil_addrinfo * ai)4181 add_cname_to_reply(struct evdns_getaddrinfo_request *data,
4182     struct evutil_addrinfo *ai)
4183 {
4184 	if (data->cname_result && ai) {
4185 		ai->ai_canonname = data->cname_result;
4186 		data->cname_result = NULL;
4187 	}
4188 }
4189 
4190 /* Callback: invoked when one request in a mixed-format A/AAAA getaddrinfo
4191  * request has finished, but the other one took too long to answer. Pass
4192  * along the answer we got, and cancel the other request.
4193  */
4194 static void
evdns_getaddrinfo_timeout_cb(evutil_socket_t fd,short what,void * ptr)4195 evdns_getaddrinfo_timeout_cb(evutil_socket_t fd, short what, void *ptr)
4196 {
4197 	int v4_timedout = 0, v6_timedout = 0;
4198 	struct evdns_getaddrinfo_request *data = ptr;
4199 
4200 	/* Cancel any pending requests, and note which one */
4201 	if (data->ipv4_request.r) {
4202 		evdns_cancel_request(NULL, data->ipv4_request.r);
4203 		v4_timedout = 1;
4204 		EVDNS_LOCK(data->evdns_base);
4205 		++data->evdns_base->getaddrinfo_ipv4_timeouts;
4206 		EVDNS_UNLOCK(data->evdns_base);
4207 	}
4208 	if (data->ipv6_request.r) {
4209 		evdns_cancel_request(NULL, data->ipv6_request.r);
4210 		v6_timedout = 1;
4211 		EVDNS_LOCK(data->evdns_base);
4212 		++data->evdns_base->getaddrinfo_ipv6_timeouts;
4213 		EVDNS_UNLOCK(data->evdns_base);
4214 	}
4215 
4216 	/* We only use this timeout callback when we have an answer for
4217 	 * one address. */
4218 	EVUTIL_ASSERT(!v4_timedout || !v6_timedout);
4219 
4220 	/* Report the outcome of the other request that didn't time out. */
4221 	if (data->pending_result) {
4222 		add_cname_to_reply(data, data->pending_result);
4223 		data->user_cb(0, data->pending_result, data->user_data);
4224 		data->pending_result = NULL;
4225 	} else {
4226 		int e = data->pending_error;
4227 		if (!e)
4228 			e = EVUTIL_EAI_AGAIN;
4229 		data->user_cb(e, NULL, data->user_data);
4230 	}
4231 
4232 	if (!v4_timedout && !v6_timedout) {
4233 		/* should be impossible? XXXX */
4234 		free_getaddrinfo_request(data);
4235 	}
4236 }
4237 
4238 static int
evdns_getaddrinfo_set_timeout(struct evdns_base * evdns_base,struct evdns_getaddrinfo_request * data)4239 evdns_getaddrinfo_set_timeout(struct evdns_base *evdns_base,
4240     struct evdns_getaddrinfo_request *data)
4241 {
4242 	return event_add(&data->timeout, &evdns_base->global_getaddrinfo_allow_skew);
4243 }
4244 
4245 static inline int
evdns_result_is_answer(int result)4246 evdns_result_is_answer(int result)
4247 {
4248 	return (result != DNS_ERR_NOTIMPL && result != DNS_ERR_REFUSED &&
4249 	    result != DNS_ERR_SERVERFAILED && result != DNS_ERR_CANCEL);
4250 }
4251 
4252 static void
evdns_getaddrinfo_gotresolve(int result,char type,int count,int ttl,void * addresses,void * arg)4253 evdns_getaddrinfo_gotresolve(int result, char type, int count,
4254     int ttl, void *addresses, void *arg)
4255 {
4256 	int i;
4257 	struct getaddrinfo_subrequest *req = arg;
4258 	struct getaddrinfo_subrequest *other_req;
4259 	struct evdns_getaddrinfo_request *data;
4260 
4261 	struct evutil_addrinfo *res;
4262 
4263 	struct sockaddr_in sin;
4264 	struct sockaddr_in6 sin6;
4265 	struct sockaddr *sa;
4266 	int socklen, addrlen;
4267 	void *addrp;
4268 	int err;
4269 	int user_canceled;
4270 
4271 	EVUTIL_ASSERT(req->type == DNS_IPv4_A || req->type == DNS_IPv6_AAAA);
4272 	if (req->type == DNS_IPv4_A) {
4273 		data = EVUTIL_UPCAST(req, struct evdns_getaddrinfo_request, ipv4_request);
4274 		other_req = &data->ipv6_request;
4275 	} else {
4276 		data = EVUTIL_UPCAST(req, struct evdns_getaddrinfo_request, ipv6_request);
4277 		other_req = &data->ipv4_request;
4278 	}
4279 
4280 	EVDNS_LOCK(data->evdns_base);
4281 	if (evdns_result_is_answer(result)) {
4282 		if (req->type == DNS_IPv4_A)
4283 			++data->evdns_base->getaddrinfo_ipv4_answered;
4284 		else
4285 			++data->evdns_base->getaddrinfo_ipv6_answered;
4286 	}
4287 	user_canceled = data->user_canceled;
4288 	if (other_req->r == NULL)
4289 		data->request_done = 1;
4290 	EVDNS_UNLOCK(data->evdns_base);
4291 
4292 	req->r = NULL;
4293 
4294 	if (result == DNS_ERR_CANCEL && ! user_canceled) {
4295 		/* Internal cancel request from timeout or internal error.
4296 		 * we already answered the user. */
4297 		if (other_req->r == NULL)
4298 			free_getaddrinfo_request(data);
4299 		return;
4300 	}
4301 
4302 	if (result == DNS_ERR_NONE) {
4303 		if (count == 0)
4304 			err = EVUTIL_EAI_NODATA;
4305 		else
4306 			err = 0;
4307 	} else {
4308 		err = evdns_err_to_getaddrinfo_err(result);
4309 	}
4310 
4311 	if (err) {
4312 		/* Looks like we got an error. */
4313 		if (other_req->r) {
4314 			/* The other request is still working; maybe it will
4315 			 * succeed. */
4316 			/* XXXX handle failure from set_timeout */
4317 			evdns_getaddrinfo_set_timeout(data->evdns_base, data);
4318 			data->pending_error = err;
4319 			return;
4320 		}
4321 
4322 		if (user_canceled) {
4323 			data->user_cb(EVUTIL_EAI_CANCEL, NULL, data->user_data);
4324 		} else if (data->pending_result) {
4325 			/* If we have an answer waiting, and we weren't
4326 			 * canceled, ignore this error. */
4327 			add_cname_to_reply(data, data->pending_result);
4328 			data->user_cb(0, data->pending_result, data->user_data);
4329 			data->pending_result = NULL;
4330 		} else {
4331 			if (data->pending_error)
4332 				err = getaddrinfo_merge_err(err,
4333 				    data->pending_error);
4334 			data->user_cb(err, NULL, data->user_data);
4335 		}
4336 		free_getaddrinfo_request(data);
4337 		return;
4338 	} else if (user_canceled) {
4339 		if (other_req->r) {
4340 			/* The other request is still working; let it hit this
4341 			 * callback with EVUTIL_EAI_CANCEL callback and report
4342 			 * the failure. */
4343 			return;
4344 		}
4345 		data->user_cb(EVUTIL_EAI_CANCEL, NULL, data->user_data);
4346 		free_getaddrinfo_request(data);
4347 		return;
4348 	}
4349 
4350 	/* Looks like we got some answers. We should turn them into addrinfos
4351 	 * and then either queue those or return them all. */
4352 	EVUTIL_ASSERT(type == DNS_IPv4_A || type == DNS_IPv6_AAAA);
4353 
4354 	if (type == DNS_IPv4_A) {
4355 		memset(&sin, 0, sizeof(sin));
4356 		sin.sin_family = AF_INET;
4357 		sin.sin_port = htons(data->port);
4358 
4359 		sa = (struct sockaddr *)&sin;
4360 		socklen = sizeof(sin);
4361 		addrlen = 4;
4362 		addrp = &sin.sin_addr.s_addr;
4363 	} else {
4364 		memset(&sin6, 0, sizeof(sin6));
4365 		sin6.sin6_family = AF_INET6;
4366 		sin6.sin6_port = htons(data->port);
4367 
4368 		sa = (struct sockaddr *)&sin6;
4369 		socklen = sizeof(sin6);
4370 		addrlen = 16;
4371 		addrp = &sin6.sin6_addr.s6_addr;
4372 	}
4373 
4374 	res = NULL;
4375 	for (i=0; i < count; ++i) {
4376 		struct evutil_addrinfo *ai;
4377 		memcpy(addrp, ((char*)addresses)+i*addrlen, addrlen);
4378 		ai = evutil_new_addrinfo(sa, socklen, &data->hints);
4379 		if (!ai) {
4380 			if (other_req->r) {
4381 				evdns_cancel_request(NULL, other_req->r);
4382 			}
4383 			data->user_cb(EVUTIL_EAI_MEMORY, NULL, data->user_data);
4384 			if (res)
4385 				evutil_freeaddrinfo(res);
4386 
4387 			if (other_req->r == NULL)
4388 				free_getaddrinfo_request(data);
4389 			return;
4390 		}
4391 		res = evutil_addrinfo_append(res, ai);
4392 	}
4393 
4394 	if (other_req->r) {
4395 		/* The other request is still in progress; wait for it */
4396 		/* XXXX handle failure from set_timeout */
4397 		evdns_getaddrinfo_set_timeout(data->evdns_base, data);
4398 		data->pending_result = res;
4399 		return;
4400 	} else {
4401 		/* The other request is done or never started; append its
4402 		 * results (if any) and return them. */
4403 		if (data->pending_result) {
4404 			if (req->type == DNS_IPv4_A)
4405 				res = evutil_addrinfo_append(res,
4406 				    data->pending_result);
4407 			else
4408 				res = evutil_addrinfo_append(
4409 				    data->pending_result, res);
4410 			data->pending_result = NULL;
4411 		}
4412 
4413 		/* Call the user callback. */
4414 		add_cname_to_reply(data, res);
4415 		data->user_cb(0, res, data->user_data);
4416 
4417 		/* Free data. */
4418 		free_getaddrinfo_request(data);
4419 	}
4420 }
4421 
4422 static struct hosts_entry *
find_hosts_entry(struct evdns_base * base,const char * hostname,struct hosts_entry * find_after)4423 find_hosts_entry(struct evdns_base *base, const char *hostname,
4424     struct hosts_entry *find_after)
4425 {
4426 	struct hosts_entry *e;
4427 
4428 	if (find_after)
4429 		e = TAILQ_NEXT(find_after, next);
4430 	else
4431 		e = TAILQ_FIRST(&base->hostsdb);
4432 
4433 	for (; e; e = TAILQ_NEXT(e, next)) {
4434 		if (!evutil_ascii_strcasecmp(e->hostname, hostname))
4435 			return e;
4436 	}
4437 	return NULL;
4438 }
4439 
4440 static int
evdns_getaddrinfo_fromhosts(struct evdns_base * base,const char * nodename,struct evutil_addrinfo * hints,ev_uint16_t port,struct evutil_addrinfo ** res)4441 evdns_getaddrinfo_fromhosts(struct evdns_base *base,
4442     const char *nodename, struct evutil_addrinfo *hints, ev_uint16_t port,
4443     struct evutil_addrinfo **res)
4444 {
4445 	int n_found = 0;
4446 	struct hosts_entry *e;
4447 	struct evutil_addrinfo *ai=NULL;
4448 	int f = hints->ai_family;
4449 
4450 	EVDNS_LOCK(base);
4451 	for (e = find_hosts_entry(base, nodename, NULL); e;
4452 	    e = find_hosts_entry(base, nodename, e)) {
4453 		struct evutil_addrinfo *ai_new;
4454 		++n_found;
4455 		if ((e->addr.sa.sa_family == AF_INET && f == PF_INET6) ||
4456 		    (e->addr.sa.sa_family == AF_INET6 && f == PF_INET))
4457 			continue;
4458 		ai_new = evutil_new_addrinfo(&e->addr.sa, e->addrlen, hints);
4459 		if (!ai_new) {
4460 			n_found = 0;
4461 			goto out;
4462 		}
4463 		sockaddr_setport(ai_new->ai_addr, port);
4464 		ai = evutil_addrinfo_append(ai, ai_new);
4465 	}
4466 	EVDNS_UNLOCK(base);
4467 out:
4468 	if (n_found) {
4469 		/* Note that we return an empty answer if we found entries for
4470 		 * this hostname but none were of the right address type. */
4471 		*res = ai;
4472 		return 0;
4473 	} else {
4474 		if (ai)
4475 			evutil_freeaddrinfo(ai);
4476 		return -1;
4477 	}
4478 }
4479 
4480 struct evdns_getaddrinfo_request *
evdns_getaddrinfo(struct evdns_base * dns_base,const char * nodename,const char * servname,const struct evutil_addrinfo * hints_in,evdns_getaddrinfo_cb cb,void * arg)4481 evdns_getaddrinfo(struct evdns_base *dns_base,
4482     const char *nodename, const char *servname,
4483     const struct evutil_addrinfo *hints_in,
4484     evdns_getaddrinfo_cb cb, void *arg)
4485 {
4486 	struct evdns_getaddrinfo_request *data;
4487 	struct evutil_addrinfo hints;
4488 	struct evutil_addrinfo *res = NULL;
4489 	int err;
4490 	int port = 0;
4491 	int want_cname = 0;
4492 
4493 	if (!dns_base) {
4494 		dns_base = current_base;
4495 		if (!dns_base) {
4496 			log(EVDNS_LOG_WARN,
4497 			    "Call to getaddrinfo_async with no "
4498 			    "evdns_base configured.");
4499 			cb(EVUTIL_EAI_FAIL, NULL, arg); /* ??? better error? */
4500 			return NULL;
4501 		}
4502 	}
4503 
4504 	/* If we _must_ answer this immediately, do so. */
4505 	if ((hints_in && (hints_in->ai_flags & EVUTIL_AI_NUMERICHOST))) {
4506 		res = NULL;
4507 		err = evutil_getaddrinfo(nodename, servname, hints_in, &res);
4508 		cb(err, res, arg);
4509 		return NULL;
4510 	}
4511 
4512 	if (hints_in) {
4513 		memcpy(&hints, hints_in, sizeof(hints));
4514 	} else {
4515 		memset(&hints, 0, sizeof(hints));
4516 		hints.ai_family = PF_UNSPEC;
4517 	}
4518 
4519 	evutil_adjust_hints_for_addrconfig(&hints);
4520 
4521 	/* Now try to see if we _can_ answer immediately. */
4522 	/* (It would be nice to do this by calling getaddrinfo directly, with
4523 	 * AI_NUMERICHOST, on plaforms that have it, but we can't: there isn't
4524 	 * a reliable way to distinguish the "that wasn't a numeric host!" case
4525 	 * from any other EAI_NONAME cases.) */
4526 	err = evutil_getaddrinfo_common(nodename, servname, &hints, &res, &port);
4527 	if (err != EVUTIL_EAI_NEED_RESOLVE) {
4528 		cb(err, res, arg);
4529 		return NULL;
4530 	}
4531 
4532 	/* If there is an entry in the hosts file, we should give it now. */
4533 	if (!evdns_getaddrinfo_fromhosts(dns_base, nodename, &hints, port, &res)) {
4534 		cb(0, res, arg);
4535 		return NULL;
4536 	}
4537 
4538 	/* Okay, things are serious now. We're going to need to actually
4539 	 * launch a request.
4540 	 */
4541 	data = mm_calloc(1,sizeof(struct evdns_getaddrinfo_request));
4542 	if (!data) {
4543 		cb(EVUTIL_EAI_MEMORY, NULL, arg);
4544 		return NULL;
4545 	}
4546 
4547 	memcpy(&data->hints, &hints, sizeof(data->hints));
4548 	data->port = (ev_uint16_t)port;
4549 	data->ipv4_request.type = DNS_IPv4_A;
4550 	data->ipv6_request.type = DNS_IPv6_AAAA;
4551 	data->user_cb = cb;
4552 	data->user_data = arg;
4553 	data->evdns_base = dns_base;
4554 
4555 	want_cname = (hints.ai_flags & EVUTIL_AI_CANONNAME);
4556 
4557 	/* If we are asked for a PF_UNSPEC address, we launch two requests in
4558 	 * parallel: one for an A address and one for an AAAA address.  We
4559 	 * can't send just one request, since many servers only answer one
4560 	 * question per DNS request.
4561 	 *
4562 	 * Once we have the answer to one request, we allow for a short
4563 	 * timeout before we report it, to see if the other one arrives.  If
4564 	 * they both show up in time, then we report both the answers.
4565 	 *
4566 	 * If too many addresses of one type time out or fail, we should stop
4567 	 * launching those requests. (XXX we don't do that yet.)
4568 	 */
4569 
4570 	if (hints.ai_family != PF_INET6) {
4571 		log(EVDNS_LOG_DEBUG, "Sending request for %s on ipv4 as %p",
4572 		    nodename, &data->ipv4_request);
4573 
4574 		data->ipv4_request.r = evdns_base_resolve_ipv4(dns_base,
4575 		    nodename, 0, evdns_getaddrinfo_gotresolve,
4576 		    &data->ipv4_request);
4577 		if (want_cname)
4578 			data->ipv4_request.r->current_req->put_cname_in_ptr =
4579 			    &data->cname_result;
4580 	}
4581 	if (hints.ai_family != PF_INET) {
4582 		log(EVDNS_LOG_DEBUG, "Sending request for %s on ipv6 as %p",
4583 		    nodename, &data->ipv6_request);
4584 
4585 		data->ipv6_request.r = evdns_base_resolve_ipv6(dns_base,
4586 		    nodename, 0, evdns_getaddrinfo_gotresolve,
4587 		    &data->ipv6_request);
4588 		if (want_cname)
4589 			data->ipv6_request.r->current_req->put_cname_in_ptr =
4590 			    &data->cname_result;
4591 	}
4592 
4593 	evtimer_assign(&data->timeout, dns_base->event_base,
4594 	    evdns_getaddrinfo_timeout_cb, data);
4595 
4596 	if (data->ipv4_request.r || data->ipv6_request.r) {
4597 		return data;
4598 	} else {
4599 		mm_free(data);
4600 		cb(EVUTIL_EAI_FAIL, NULL, arg);
4601 		return NULL;
4602 	}
4603 }
4604 
4605 void
evdns_getaddrinfo_cancel(struct evdns_getaddrinfo_request * data)4606 evdns_getaddrinfo_cancel(struct evdns_getaddrinfo_request *data)
4607 {
4608 	EVDNS_LOCK(data->evdns_base);
4609 	if (data->request_done) {
4610 		EVDNS_UNLOCK(data->evdns_base);
4611 		return;
4612 	}
4613 	event_del(&data->timeout);
4614 	data->user_canceled = 1;
4615 	if (data->ipv4_request.r)
4616 		evdns_cancel_request(data->evdns_base, data->ipv4_request.r);
4617 	if (data->ipv6_request.r)
4618 		evdns_cancel_request(data->evdns_base, data->ipv6_request.r);
4619 	EVDNS_UNLOCK(data->evdns_base);
4620 }
4621