FreeRTOS
[armadillo_firmware.git] / FreeRTOS / Common / ethernet / lwIP_132 / src / core / dns.c
blobb955538c948fc000a7998619ae60742377f8384d
1 /**
2 * @file
3 * DNS - host name to IP address resolver.
5 */
7 /**
9 * This file implements a DNS host name to IP address resolver.
11 * Port to lwIP from uIP
12 * by Jim Pettinato April 2007
14 * uIP version Copyright (c) 2002-2003, Adam Dunkels.
15 * All rights reserved.
17 * Redistribution and use in source and binary forms, with or without
18 * modification, are permitted provided that the following conditions
19 * are met:
20 * 1. Redistributions of source code must retain the above copyright
21 * notice, this list of conditions and the following disclaimer.
22 * 2. Redistributions in binary form must reproduce the above copyright
23 * notice, this list of conditions and the following disclaimer in the
24 * documentation and/or other materials provided with the distribution.
25 * 3. The name of the author may not be used to endorse or promote
26 * products derived from this software without specific prior
27 * written permission.
29 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS
30 * OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
31 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
32 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
33 * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
34 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE
35 * GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
36 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
37 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING
38 * NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
39 * SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
42 * DNS.C
44 * The lwIP DNS resolver functions are used to lookup a host name and
45 * map it to a numerical IP address. It maintains a list of resolved
46 * hostnames that can be queried with the dns_lookup() function.
47 * New hostnames can be resolved using the dns_query() function.
49 * The lwIP version of the resolver also adds a non-blocking version of
50 * gethostbyname() that will work with a raw API application. This function
51 * checks for an IP address string first and converts it if it is valid.
52 * gethostbyname() then does a dns_lookup() to see if the name is
53 * already in the table. If so, the IP is returned. If not, a query is
54 * issued and the function returns with a ERR_INPROGRESS status. The app
55 * using the dns client must then go into a waiting state.
57 * Once a hostname has been resolved (or found to be non-existent),
58 * the resolver code calls a specified callback function (which
59 * must be implemented by the module that uses the resolver).
62 /*-----------------------------------------------------------------------------
63 * RFC 1035 - Domain names - implementation and specification
64 * RFC 2181 - Clarifications to the DNS Specification
65 *----------------------------------------------------------------------------*/
67 /** @todo: define good default values (rfc compliance) */
68 /** @todo: improve answer parsing, more checkings... */
69 /** @todo: check RFC1035 - 7.3. Processing responses */
71 /*-----------------------------------------------------------------------------
72 * Includes
73 *----------------------------------------------------------------------------*/
75 #include "lwip/opt.h"
77 #if LWIP_DNS /* don't build if not configured for use in lwipopts.h */
79 #include "lwip/udp.h"
80 #include "lwip/mem.h"
81 #include "lwip/dns.h"
83 #include <string.h>
85 /** DNS server IP address */
86 #ifndef DNS_SERVER_ADDRESS
87 #define DNS_SERVER_ADDRESS inet_addr("208.67.222.222") /* resolver1.opendns.com */
88 #endif
90 /** DNS server port address */
91 #ifndef DNS_SERVER_PORT
92 #define DNS_SERVER_PORT 53
93 #endif
95 /** DNS maximum number of retries when asking for a name, before "timeout". */
96 #ifndef DNS_MAX_RETRIES
97 #define DNS_MAX_RETRIES 4
98 #endif
100 /** DNS resource record max. TTL (one week as default) */
101 #ifndef DNS_MAX_TTL
102 #define DNS_MAX_TTL 604800
103 #endif
105 /* DNS protocol flags */
106 #define DNS_FLAG1_RESPONSE 0x80
107 #define DNS_FLAG1_OPCODE_STATUS 0x10
108 #define DNS_FLAG1_OPCODE_INVERSE 0x08
109 #define DNS_FLAG1_OPCODE_STANDARD 0x00
110 #define DNS_FLAG1_AUTHORATIVE 0x04
111 #define DNS_FLAG1_TRUNC 0x02
112 #define DNS_FLAG1_RD 0x01
113 #define DNS_FLAG2_RA 0x80
114 #define DNS_FLAG2_ERR_MASK 0x0f
115 #define DNS_FLAG2_ERR_NONE 0x00
116 #define DNS_FLAG2_ERR_NAME 0x03
118 /* DNS protocol states */
119 #define DNS_STATE_UNUSED 0
120 #define DNS_STATE_NEW 1
121 #define DNS_STATE_ASKING 2
122 #define DNS_STATE_DONE 3
124 #ifdef PACK_STRUCT_USE_INCLUDES
125 # include "arch/bpstruct.h"
126 #endif
127 PACK_STRUCT_BEGIN
128 /** DNS message header */
129 struct dns_hdr {
130 PACK_STRUCT_FIELD(u16_t id);
131 PACK_STRUCT_FIELD(u8_t flags1);
132 PACK_STRUCT_FIELD(u8_t flags2);
133 PACK_STRUCT_FIELD(u16_t numquestions);
134 PACK_STRUCT_FIELD(u16_t numanswers);
135 PACK_STRUCT_FIELD(u16_t numauthrr);
136 PACK_STRUCT_FIELD(u16_t numextrarr);
137 } PACK_STRUCT_STRUCT;
138 PACK_STRUCT_END
139 #ifdef PACK_STRUCT_USE_INCLUDES
140 # include "arch/epstruct.h"
141 #endif
142 #define SIZEOF_DNS_HDR 12
144 #ifdef PACK_STRUCT_USE_INCLUDES
145 # include "arch/bpstruct.h"
146 #endif
147 PACK_STRUCT_BEGIN
148 /** DNS query message structure */
149 struct dns_query {
150 /* DNS query record starts with either a domain name or a pointer
151 to a name already present somewhere in the packet. */
152 PACK_STRUCT_FIELD(u16_t type);
153 PACK_STRUCT_FIELD(u16_t class);
154 } PACK_STRUCT_STRUCT;
155 PACK_STRUCT_END
156 #ifdef PACK_STRUCT_USE_INCLUDES
157 # include "arch/epstruct.h"
158 #endif
159 #define SIZEOF_DNS_QUERY 4
161 #ifdef PACK_STRUCT_USE_INCLUDES
162 # include "arch/bpstruct.h"
163 #endif
164 PACK_STRUCT_BEGIN
165 /** DNS answer message structure */
166 struct dns_answer {
167 /* DNS answer record starts with either a domain name or a pointer
168 to a name already present somewhere in the packet. */
169 PACK_STRUCT_FIELD(u16_t type);
170 PACK_STRUCT_FIELD(u16_t class);
171 PACK_STRUCT_FIELD(u32_t ttl);
172 PACK_STRUCT_FIELD(u16_t len);
173 } PACK_STRUCT_STRUCT;
174 PACK_STRUCT_END
175 #ifdef PACK_STRUCT_USE_INCLUDES
176 # include "arch/epstruct.h"
177 #endif
178 #define SIZEOF_DNS_ANSWER 10
180 /** DNS table entry */
181 struct dns_table_entry {
182 u8_t state;
183 u8_t numdns;
184 u8_t tmr;
185 u8_t retries;
186 u8_t seqno;
187 u8_t err;
188 u32_t ttl;
189 char name[DNS_MAX_NAME_LENGTH];
190 struct ip_addr ipaddr;
191 /* pointer to callback on DNS query done */
192 dns_found_callback found;
193 void *arg;
196 #if DNS_LOCAL_HOSTLIST
197 /** struct used for local host-list */
198 struct local_hostlist_entry {
199 /** static hostname */
200 const char *name;
201 /** static host address in network byteorder */
202 u32_t addr;
203 struct local_hostlist_entry *next;
206 #if DNS_LOCAL_HOSTLIST_IS_DYNAMIC
207 /** Local host-list. For hostnames in this list, no
208 * external name resolution is performed */
209 static struct local_hostlist_entry *local_hostlist_dynamic;
210 #else /* DNS_LOCAL_HOSTLIST_IS_DYNAMIC */
212 /** Defining this allows the local_hostlist_static to be placed in a different
213 * linker section (e.g. FLASH) */
214 #ifndef DNS_LOCAL_HOSTLIST_STORAGE_PRE
215 #define DNS_LOCAL_HOSTLIST_STORAGE_PRE static
216 #endif /* DNS_LOCAL_HOSTLIST_STORAGE_PRE */
217 /** Defining this allows the local_hostlist_static to be placed in a different
218 * linker section (e.g. FLASH) */
219 #ifndef DNS_LOCAL_HOSTLIST_STORAGE_POST
220 #define DNS_LOCAL_HOSTLIST_STORAGE_POST
221 #endif /* DNS_LOCAL_HOSTLIST_STORAGE_POST */
222 DNS_LOCAL_HOSTLIST_STORAGE_PRE struct local_hostlist_entry local_hostlist_static[]
223 DNS_LOCAL_HOSTLIST_STORAGE_POST = DNS_LOCAL_HOSTLIST_INIT;
225 #endif /* DNS_LOCAL_HOSTLIST_IS_DYNAMIC */
227 static void dns_init_local();
228 #endif /* DNS_LOCAL_HOSTLIST */
231 /* forward declarations */
232 static void dns_recv(void *s, struct udp_pcb *pcb, struct pbuf *p, struct ip_addr *addr, u16_t port);
233 static void dns_check_entries(void);
235 /*-----------------------------------------------------------------------------
236 * Globales
237 *----------------------------------------------------------------------------*/
239 /* DNS variables */
240 static struct udp_pcb *dns_pcb;
241 static u8_t dns_seqno;
242 static struct dns_table_entry dns_table[DNS_TABLE_SIZE];
243 static struct ip_addr dns_servers[DNS_MAX_SERVERS];
245 #if (DNS_USES_STATIC_BUF == 1)
246 static u8_t dns_payload[DNS_MSG_SIZE];
247 #endif /* (DNS_USES_STATIC_BUF == 1) */
250 * Initialize the resolver: set up the UDP pcb and configure the default server
251 * (DNS_SERVER_ADDRESS).
253 void
254 dns_init()
256 struct ip_addr dnsserver;
258 /* initialize default DNS server address */
259 dnsserver.addr = DNS_SERVER_ADDRESS;
261 LWIP_DEBUGF(DNS_DEBUG, ("dns_init: initializing\n"));
263 /* if dns client not yet initialized... */
264 if (dns_pcb == NULL) {
265 dns_pcb = udp_new();
267 if (dns_pcb != NULL) {
268 /* initialize DNS table not needed (initialized to zero since it is a
269 * global variable) */
270 LWIP_ASSERT("For implicit initialization to work, DNS_STATE_UNUSED needs to be 0",
271 DNS_STATE_UNUSED == 0);
273 /* initialize DNS client */
274 udp_bind(dns_pcb, IP_ADDR_ANY, 0);
275 udp_recv(dns_pcb, dns_recv, NULL);
277 /* initialize default DNS primary server */
278 dns_setserver(0, &dnsserver);
281 #if DNS_LOCAL_HOSTLIST
282 dns_init_local();
283 #endif
287 * Initialize one of the DNS servers.
289 * @param numdns the index of the DNS server to set must be < DNS_MAX_SERVERS
290 * @param dnsserver IP address of the DNS server to set
292 void
293 dns_setserver(u8_t numdns, struct ip_addr *dnsserver)
295 if ((numdns < DNS_MAX_SERVERS) && (dns_pcb != NULL) &&
296 (dnsserver != NULL) && (dnsserver->addr !=0 )) {
297 dns_servers[numdns] = (*dnsserver);
302 * Obtain one of the currently configured DNS server.
304 * @param numdns the index of the DNS server
305 * @return IP address of the indexed DNS server or "ip_addr_any" if the DNS
306 * server has not been configured.
308 struct ip_addr
309 dns_getserver(u8_t numdns)
311 if (numdns < DNS_MAX_SERVERS) {
312 return dns_servers[numdns];
313 } else {
314 return *IP_ADDR_ANY;
319 * The DNS resolver client timer - handle retries and timeouts and should
320 * be called every DNS_TMR_INTERVAL milliseconds (every second by default).
322 void
323 dns_tmr(void)
325 if (dns_pcb != NULL) {
326 LWIP_DEBUGF(DNS_DEBUG, ("dns_tmr: dns_check_entries\n"));
327 dns_check_entries();
331 #if DNS_LOCAL_HOSTLIST
332 static void
333 dns_init_local()
335 #if DNS_LOCAL_HOSTLIST_IS_DYNAMIC && defined(DNS_LOCAL_HOSTLIST_INIT)
336 int i;
337 struct local_hostlist_entry *entry;
338 /* Dynamic: copy entries from DNS_LOCAL_HOSTLIST_INIT to list */
339 struct local_hostlist_entry local_hostlist_init[] = DNS_LOCAL_HOSTLIST_INIT;
340 for (i = 0; i < sizeof(local_hostlist_init) / sizeof(struct local_hostlist_entry); i++) {
341 entry = mem_malloc(sizeof(struct local_hostlist_entry));
342 LWIP_ASSERT("mem-error in dns_init_local", entry != NULL);
343 if (entry != NULL) {
344 struct local_hostlist_entry *init_entry = &local_hostlist_init[i];
345 entry->name = init_entry->name;
346 entry->addr = init_entry->addr;
347 entry->next = local_hostlist_dynamic;
348 local_hostlist_dynamic = entry;
351 #endif /* DNS_LOCAL_HOSTLIST_IS_DYNAMIC && defined(DNS_LOCAL_HOSTLIST_INIT) */
355 * Scans the local host-list for a hostname.
357 * @param hostname Hostname to look for in the local host-list
358 * @return The first IP address for the hostname in the local host-list or
359 * INADDR_NONE if not found.
361 static u32_t
362 dns_lookup_local(const char *hostname)
364 #if DNS_LOCAL_HOSTLIST_IS_DYNAMIC
365 struct local_hostlist_entry *entry = local_hostlist_dynamic;
366 while(entry != NULL) {
367 if(strcmp(entry->name, hostname) == 0) {
368 return entry->addr;
370 entry = entry->next;
372 #else /* DNS_LOCAL_HOSTLIST_IS_DYNAMIC */
373 int i;
374 for (i = 0; i < sizeof(local_hostlist_static) / sizeof(struct local_hostlist_entry); i++) {
375 if(strcmp(local_hostlist_static[i].name, hostname) == 0) {
376 return local_hostlist_static[i].addr;
379 #endif /* DNS_LOCAL_HOSTLIST_IS_DYNAMIC */
380 return INADDR_NONE;
383 #if DNS_LOCAL_HOSTLIST_IS_DYNAMIC
384 /** Remove all entries from the local host-list for a specific hostname
385 * and/or IP addess
387 * @param hostname hostname for which entries shall be removed from the local
388 * host-list
389 * @param addr address for which entries shall be removed from the local host-list
390 * @return the number of removed entries
393 dns_local_removehost(const char *hostname, const struct ip_addr *addr)
395 int removed = 0;
396 struct local_hostlist_entry *entry = local_hostlist_dynamic;
397 struct local_hostlist_entry *last_entry = NULL;
398 while (entry != NULL) {
399 if (((hostname == NULL) || !strcmp(entry->name, hostname)) &&
400 ((addr == NULL) || (entry->addr == addr->addr))) {
401 struct local_hostlist_entry *free_entry;
402 if (last_entry != NULL) {
403 last_entry->next = entry->next;
404 } else {
405 local_hostlist_dynamic = entry->next;
407 free_entry = entry;
408 entry = entry->next;
409 mem_free(free_entry);
410 removed++;
411 } else {
412 last_entry = entry;
413 entry = entry->next;
416 return removed;
420 * Add a hostname/IP address pair to the local host-list.
421 * Duplicates are not checked.
423 * @param hostname hostname of the new entry
424 * @param addr IP address of the new entry
425 * @return ERR_OK if succeeded or ERR_MEM on memory error
427 err_t
428 dns_local_addhost(const char *hostname, const struct ip_addr *addr)
430 struct local_hostlist_entry *entry;
431 entry = mem_malloc(sizeof(struct local_hostlist_entry));
432 if (entry == NULL) {
433 return ERR_MEM;
435 entry->name = hostname;
436 entry->addr = addr->addr;
437 entry->next = local_hostlist_dynamic;
438 local_hostlist_dynamic = entry;
439 return ERR_OK;
441 #endif /* DNS_LOCAL_HOSTLIST_IS_DYNAMIC*/
442 #endif /* DNS_LOCAL_HOSTLIST */
445 * Look up a hostname in the array of known hostnames.
447 * @note This function only looks in the internal array of known
448 * hostnames, it does not send out a query for the hostname if none
449 * was found. The function dns_enqueue() can be used to send a query
450 * for a hostname.
452 * @param name the hostname to look up
453 * @return the hostname's IP address, as u32_t (instead of struct ip_addr to
454 * better check for failure: != INADDR_NONE) or INADDR_NONE if the hostname
455 * was not found in the cached dns_table.
457 static u32_t
458 dns_lookup(const char *name)
460 u8_t i;
461 #if DNS_LOCAL_HOSTLIST || defined(DNS_LOOKUP_LOCAL_EXTERN)
462 u32_t addr;
463 #endif /* DNS_LOCAL_HOSTLIST || defined(DNS_LOOKUP_LOCAL_EXTERN) */
464 #if DNS_LOCAL_HOSTLIST
465 if ((addr = dns_lookup_local(name)) != INADDR_NONE) {
466 return addr;
468 #endif /* DNS_LOCAL_HOSTLIST */
469 #ifdef DNS_LOOKUP_LOCAL_EXTERN
470 if((addr = DNS_LOOKUP_LOCAL_EXTERN(name)) != INADDR_NONE) {
471 return addr;
473 #endif /* DNS_LOOKUP_LOCAL_EXTERN */
475 /* Walk through name list, return entry if found. If not, return NULL. */
476 for (i = 0; i < DNS_TABLE_SIZE; ++i) {
477 if ((dns_table[i].state == DNS_STATE_DONE) &&
478 (strcmp(name, dns_table[i].name) == 0)) {
479 LWIP_DEBUGF(DNS_DEBUG, ("dns_lookup: \"%s\": found = ", name));
480 ip_addr_debug_print(DNS_DEBUG, &(dns_table[i].ipaddr));
481 LWIP_DEBUGF(DNS_DEBUG, ("\n"));
482 return dns_table[i].ipaddr.addr;
486 return INADDR_NONE;
489 #if DNS_DOES_NAME_CHECK
491 * Compare the "dotted" name "query" with the encoded name "response"
492 * to make sure an answer from the DNS server matches the current dns_table
493 * entry (otherwise, answers might arrive late for hostname not on the list
494 * any more).
496 * @param query hostname (not encoded) from the dns_table
497 * @param response encoded hostname in the DNS response
498 * @return 0: names equal; 1: names differ
500 static u8_t
501 dns_compare_name(unsigned char *query, unsigned char *response)
503 unsigned char n;
505 do {
506 n = *response++;
507 /** @see RFC 1035 - 4.1.4. Message compression */
508 if ((n & 0xc0) == 0xc0) {
509 /* Compressed name */
510 break;
511 } else {
512 /* Not compressed name */
513 while (n > 0) {
514 if ((*query) != (*response)) {
515 return 1;
517 ++response;
518 ++query;
519 --n;
521 ++query;
523 } while (*response != 0);
525 return 0;
527 #endif /* DNS_DOES_NAME_CHECK */
530 * Walk through a compact encoded DNS name and return the end of the name.
532 * @param query encoded DNS name in the DNS server response
533 * @return end of the name
535 static unsigned char *
536 dns_parse_name(unsigned char *query)
538 unsigned char n;
540 do {
541 n = *query++;
542 /** @see RFC 1035 - 4.1.4. Message compression */
543 if ((n & 0xc0) == 0xc0) {
544 /* Compressed name */
545 break;
546 } else {
547 /* Not compressed name */
548 while (n > 0) {
549 ++query;
550 --n;
553 } while (*query != 0);
555 return query + 1;
559 * Send a DNS query packet.
561 * @param numdns index of the DNS server in the dns_servers table
562 * @param name hostname to query
563 * @param id index of the hostname in dns_table, used as transaction ID in the
564 * DNS query packet
565 * @return ERR_OK if packet is sent; an err_t indicating the problem otherwise
567 static err_t
568 dns_send(u8_t numdns, const char* name, u8_t id)
570 err_t err;
571 struct dns_hdr *hdr;
572 struct dns_query qry;
573 struct pbuf *p;
574 char *query, *nptr;
575 const char *pHostname;
576 u8_t n;
578 LWIP_DEBUGF(DNS_DEBUG, ("dns_send: dns_servers[%"U16_F"] \"%s\": request\n",
579 (u16_t)(numdns), name));
580 LWIP_ASSERT("dns server out of array", numdns < DNS_MAX_SERVERS);
581 LWIP_ASSERT("dns server has no IP address set", dns_servers[numdns].addr != 0);
583 /* if here, we have either a new query or a retry on a previous query to process */
584 p = pbuf_alloc(PBUF_TRANSPORT, SIZEOF_DNS_HDR + DNS_MAX_NAME_LENGTH +
585 SIZEOF_DNS_QUERY, PBUF_RAM);
586 if (p != NULL) {
587 LWIP_ASSERT("pbuf must be in one piece", p->next == NULL);
588 /* fill dns header */
589 hdr = (struct dns_hdr*)p->payload;
590 memset(hdr, 0, SIZEOF_DNS_HDR);
591 hdr->id = htons(id);
592 hdr->flags1 = DNS_FLAG1_RD;
593 hdr->numquestions = htons(1);
594 query = (char*)hdr + SIZEOF_DNS_HDR;
595 pHostname = name;
596 --pHostname;
598 /* convert hostname into suitable query format. */
599 do {
600 ++pHostname;
601 nptr = query;
602 ++query;
603 for(n = 0; *pHostname != '.' && *pHostname != 0; ++pHostname) {
604 *query = *pHostname;
605 ++query;
606 ++n;
608 *nptr = n;
609 } while(*pHostname != 0);
610 *query++='\0';
612 /* fill dns query */
613 qry.type = htons(DNS_RRTYPE_A);
614 qry.class = htons(DNS_RRCLASS_IN);
615 MEMCPY( query, &qry, SIZEOF_DNS_QUERY);
617 /* resize pbuf to the exact dns query */
618 pbuf_realloc(p, (query + SIZEOF_DNS_QUERY) - ((char*)(p->payload)));
620 /* connect to the server for faster receiving */
621 udp_connect(dns_pcb, &dns_servers[numdns], DNS_SERVER_PORT);
622 /* send dns packet */
623 err = udp_sendto(dns_pcb, p, &dns_servers[numdns], DNS_SERVER_PORT);
625 /* free pbuf */
626 pbuf_free(p);
627 } else {
628 err = ERR_MEM;
631 return err;
635 * dns_check_entry() - see if pEntry has not yet been queried and, if so, sends out a query.
636 * Check an entry in the dns_table:
637 * - send out query for new entries
638 * - retry old pending entries on timeout (also with different servers)
639 * - remove completed entries from the table if their TTL has expired
641 * @param i index of the dns_table entry to check
643 static void
644 dns_check_entry(u8_t i)
646 struct dns_table_entry *pEntry = &dns_table[i];
648 LWIP_ASSERT("array index out of bounds", i < DNS_TABLE_SIZE);
650 switch(pEntry->state) {
652 case DNS_STATE_NEW: {
653 /* initialize new entry */
654 pEntry->state = DNS_STATE_ASKING;
655 pEntry->numdns = 0;
656 pEntry->tmr = 1;
657 pEntry->retries = 0;
659 /* send DNS packet for this entry */
660 dns_send(pEntry->numdns, pEntry->name, i);
661 break;
664 case DNS_STATE_ASKING: {
665 if (--pEntry->tmr == 0) {
666 if (++pEntry->retries == DNS_MAX_RETRIES) {
667 if ((pEntry->numdns+1<DNS_MAX_SERVERS) && (dns_servers[pEntry->numdns+1].addr!=0)) {
668 /* change of server */
669 pEntry->numdns++;
670 pEntry->tmr = 1;
671 pEntry->retries = 0;
672 break;
673 } else {
674 LWIP_DEBUGF(DNS_DEBUG, ("dns_check_entry: \"%s\": timeout\n", pEntry->name));
675 /* call specified callback function if provided */
676 if (pEntry->found)
677 (*pEntry->found)(pEntry->name, NULL, pEntry->arg);
678 /* flush this entry */
679 pEntry->state = DNS_STATE_UNUSED;
680 pEntry->found = NULL;
681 break;
685 /* wait longer for the next retry */
686 pEntry->tmr = pEntry->retries;
688 /* send DNS packet for this entry */
689 dns_send(pEntry->numdns, pEntry->name, i);
691 break;
694 case DNS_STATE_DONE: {
695 /* if the time to live is nul */
696 if (--pEntry->ttl == 0) {
697 LWIP_DEBUGF(DNS_DEBUG, ("dns_check_entry: \"%s\": flush\n", pEntry->name));
698 /* flush this entry */
699 pEntry->state = DNS_STATE_UNUSED;
700 pEntry->found = NULL;
702 break;
704 case DNS_STATE_UNUSED:
705 /* nothing to do */
706 break;
707 default:
708 LWIP_ASSERT("unknown dns_table entry state:", 0);
709 break;
714 * Call dns_check_entry for each entry in dns_table - check all entries.
716 static void
717 dns_check_entries(void)
719 u8_t i;
721 for (i = 0; i < DNS_TABLE_SIZE; ++i) {
722 dns_check_entry(i);
727 * Receive input function for DNS response packets arriving for the dns UDP pcb.
729 * @params see udp.h
731 static void
732 dns_recv(void *arg, struct udp_pcb *pcb, struct pbuf *p, struct ip_addr *addr, u16_t port)
734 u8_t i;
735 char *pHostname;
736 struct dns_hdr *hdr;
737 struct dns_answer ans;
738 struct dns_table_entry *pEntry;
739 u8_t nquestions, nanswers;
740 #if (DNS_USES_STATIC_BUF == 0)
741 u8_t dns_payload[DNS_MSG_SIZE];
742 #endif /* (DNS_USES_STATIC_BUF == 0) */
743 #if (DNS_USES_STATIC_BUF == 2)
744 u8_t* dns_payload;
745 #endif /* (DNS_USES_STATIC_BUF == 2) */
747 LWIP_UNUSED_ARG(arg);
748 LWIP_UNUSED_ARG(pcb);
749 LWIP_UNUSED_ARG(addr);
750 LWIP_UNUSED_ARG(port);
752 /* is the dns message too big ? */
753 if (p->tot_len > DNS_MSG_SIZE) {
754 LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: pbuf too big\n"));
755 /* free pbuf and return */
756 goto memerr1;
759 /* is the dns message big enough ? */
760 if (p->tot_len < (SIZEOF_DNS_HDR + SIZEOF_DNS_QUERY + SIZEOF_DNS_ANSWER)) {
761 LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: pbuf too small\n"));
762 /* free pbuf and return */
763 goto memerr1;
766 #if (DNS_USES_STATIC_BUF == 2)
767 dns_payload = mem_malloc(p->tot_len);
768 if (dns_payload == NULL) {
769 LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: mem_malloc error\n"));
770 /* free pbuf and return */
771 goto memerr1;
773 #endif /* (DNS_USES_STATIC_BUF == 2) */
775 /* copy dns payload inside static buffer for processing */
776 if (pbuf_copy_partial(p, dns_payload, p->tot_len, 0) == p->tot_len) {
777 /* The ID in the DNS header should be our entry into the name table. */
778 hdr = (struct dns_hdr*)dns_payload;
779 i = htons(hdr->id);
780 if (i < DNS_TABLE_SIZE) {
781 pEntry = &dns_table[i];
782 if(pEntry->state == DNS_STATE_ASKING) {
783 /* This entry is now completed. */
784 pEntry->state = DNS_STATE_DONE;
785 pEntry->err = hdr->flags2 & DNS_FLAG2_ERR_MASK;
787 /* We only care about the question(s) and the answers. The authrr
788 and the extrarr are simply discarded. */
789 nquestions = htons(hdr->numquestions);
790 nanswers = htons(hdr->numanswers);
792 /* Check for error. If so, call callback to inform. */
793 if (((hdr->flags1 & DNS_FLAG1_RESPONSE) == 0) || (pEntry->err != 0) || (nquestions != 1)) {
794 LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": error in flags\n", pEntry->name));
795 /* call callback to indicate error, clean up memory and return */
796 goto responseerr;
799 #if DNS_DOES_NAME_CHECK
800 /* Check if the name in the "question" part match with the name in the entry. */
801 if (dns_compare_name((unsigned char *)(pEntry->name), (unsigned char *)dns_payload + SIZEOF_DNS_HDR) != 0) {
802 LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": response not match to query\n", pEntry->name));
803 /* call callback to indicate error, clean up memory and return */
804 goto responseerr;
806 #endif /* DNS_DOES_NAME_CHECK */
808 /* Skip the name in the "question" part */
809 pHostname = (char *) dns_parse_name((unsigned char *)dns_payload + SIZEOF_DNS_HDR) + SIZEOF_DNS_QUERY;
811 while(nanswers > 0) {
812 /* skip answer resource record's host name */
813 pHostname = (char *) dns_parse_name((unsigned char *)pHostname);
815 /* Check for IP address type and Internet class. Others are discarded. */
816 MEMCPY(&ans, pHostname, SIZEOF_DNS_ANSWER);
817 if((ntohs(ans.type) == DNS_RRTYPE_A) && (ntohs(ans.class) == DNS_RRCLASS_IN) && (ntohs(ans.len) == sizeof(struct ip_addr)) ) {
818 /* read the answer resource record's TTL, and maximize it if needed */
819 pEntry->ttl = ntohl(ans.ttl);
820 if (pEntry->ttl > DNS_MAX_TTL) {
821 pEntry->ttl = DNS_MAX_TTL;
823 /* read the IP address after answer resource record's header */
824 MEMCPY( &(pEntry->ipaddr), (pHostname+SIZEOF_DNS_ANSWER), sizeof(struct ip_addr));
825 LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": response = ", pEntry->name));
826 ip_addr_debug_print(DNS_DEBUG, (&(pEntry->ipaddr)));
827 LWIP_DEBUGF(DNS_DEBUG, ("\n"));
828 /* call specified callback function if provided */
829 if (pEntry->found) {
830 (*pEntry->found)(pEntry->name, &pEntry->ipaddr, pEntry->arg);
832 /* deallocate memory and return */
833 goto memerr2;
834 } else {
835 pHostname = pHostname + SIZEOF_DNS_ANSWER + htons(ans.len);
837 --nanswers;
839 LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": error in response\n", pEntry->name));
840 /* call callback to indicate error, clean up memory and return */
841 goto responseerr;
846 /* deallocate memory and return */
847 goto memerr2;
849 responseerr:
850 /* ERROR: call specified callback function with NULL as name to indicate an error */
851 if (pEntry->found) {
852 (*pEntry->found)(pEntry->name, NULL, pEntry->arg);
854 /* flush this entry */
855 pEntry->state = DNS_STATE_UNUSED;
856 pEntry->found = NULL;
858 memerr2:
859 #if (DNS_USES_STATIC_BUF == 2)
860 /* free dns buffer */
861 mem_free(dns_payload);
862 #endif /* (DNS_USES_STATIC_BUF == 2) */
864 memerr1:
865 /* free pbuf */
866 pbuf_free(p);
867 return;
871 * Queues a new hostname to resolve and sends out a DNS query for that hostname
873 * @param name the hostname that is to be queried
874 * @param found a callback founction to be called on success, failure or timeout
875 * @param callback_arg argument to pass to the callback function
876 * @return @return a err_t return code.
878 static err_t
879 dns_enqueue(const char *name, dns_found_callback found, void *callback_arg)
881 u8_t i;
882 u8_t lseq, lseqi;
883 struct dns_table_entry *pEntry = NULL;
885 /* search an unused entry, or the oldest one */
886 lseq = lseqi = 0;
887 for (i = 0; i < DNS_TABLE_SIZE; ++i) {
888 pEntry = &dns_table[i];
889 /* is it an unused entry ? */
890 if (pEntry->state == DNS_STATE_UNUSED)
891 break;
893 /* check if this is the oldest completed entry */
894 if (pEntry->state == DNS_STATE_DONE) {
895 if ((dns_seqno - pEntry->seqno) > lseq) {
896 lseq = dns_seqno - pEntry->seqno;
897 lseqi = i;
902 /* if we don't have found an unused entry, use the oldest completed one */
903 if (i == DNS_TABLE_SIZE) {
904 if ((lseqi >= DNS_TABLE_SIZE) || (dns_table[lseqi].state != DNS_STATE_DONE)) {
905 /* no entry can't be used now, table is full */
906 LWIP_DEBUGF(DNS_DEBUG, ("dns_enqueue: \"%s\": DNS entries table is full\n", name));
907 return ERR_MEM;
908 } else {
909 /* use the oldest completed one */
910 i = lseqi;
911 pEntry = &dns_table[i];
915 /* use this entry */
916 LWIP_DEBUGF(DNS_DEBUG, ("dns_enqueue: \"%s\": use DNS entry %"U16_F"\n", name, (u16_t)(i)));
918 /* fill the entry */
919 pEntry->state = DNS_STATE_NEW;
920 pEntry->seqno = dns_seqno++;
921 pEntry->found = found;
922 pEntry->arg = callback_arg;
923 strcpy(pEntry->name, name);
925 /* force to send query without waiting timer */
926 dns_check_entry(i);
928 /* dns query is enqueued */
929 return ERR_INPROGRESS;
933 * Resolve a hostname (string) into an IP address.
934 * NON-BLOCKING callback version for use with raw API!!!
936 * Returns immediately with one of err_t return codes:
937 * - ERR_OK if hostname is a valid IP address string or the host
938 * name is already in the local names table.
939 * - ERR_INPROGRESS enqueue a request to be sent to the DNS server
940 * for resolution if no errors are present.
942 * @param hostname the hostname that is to be queried
943 * @param addr pointer to a struct ip_addr where to store the address if it is already
944 * cached in the dns_table (only valid if ERR_OK is returned!)
945 * @param found a callback function to be called on success, failure or timeout (only if
946 * ERR_INPROGRESS is returned!)
947 * @param callback_arg argument to pass to the callback function
948 * @return a err_t return code.
950 err_t
951 dns_gethostbyname(const char *hostname, struct ip_addr *addr, dns_found_callback found,
952 void *callback_arg)
954 /* not initialized or no valid server yet, or invalid addr pointer
955 * or invalid hostname or invalid hostname length */
956 if ((dns_pcb == NULL) || (addr == NULL) ||
957 (!hostname) || (!hostname[0]) ||
958 (strlen(hostname) >= DNS_MAX_NAME_LENGTH)) {
959 return ERR_VAL;
962 #if LWIP_HAVE_LOOPIF
963 if (strcmp(hostname,"localhost")==0) {
964 addr->addr = htonl(INADDR_LOOPBACK);
965 return ERR_OK;
967 #endif /* LWIP_HAVE_LOOPIF */
969 /* host name already in octet notation? set ip addr and return ERR_OK
970 * already have this address cached? */
971 if (((addr->addr = inet_addr(hostname)) != INADDR_NONE) ||
972 ((addr->addr = dns_lookup(hostname)) != INADDR_NONE)) {
973 return ERR_OK;
976 /* queue query with specified callback */
977 return dns_enqueue(hostname, found, callback_arg);
980 #endif /* LWIP_DNS */