#include "lwip/opt.h"
#if LWIP_DNS
#include "lwip/def.h"
#include "lwip/udp.h"
#include "lwip/mem.h"
#include "lwip/memp.h"
#include "lwip/dns.h"
#include "lwip/prot/dns.h"
#include <string.h>
#ifndef DNS_RAND_TXID
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_RAND_XID) != 0)
#define DNS_RAND_TXID LWIP_RAND
#else
static u16_t dns_txid;
#define DNS_RAND_TXID() (++dns_txid)
#endif
#endif
#ifndef DNS_PORT_ALLOWED
#define DNS_PORT_ALLOWED(port) ((port) >= 1024)
#endif
#ifndef DNS_MAX_TTL
#define DNS_MAX_TTL 604800
#elif DNS_MAX_TTL > 0x7FFFFFFF
#error DNS_MAX_TTL must be a positive 32-bit value
#endif
#if DNS_TABLE_SIZE > 255
#error DNS_TABLE_SIZE must fit into an u8_t
#endif
#if DNS_MAX_SERVERS > 255
#error DNS_MAX_SERVERS must fit into an u8_t
#endif
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_NO_MULTIPLE_OUTSTANDING) != 0)
#ifndef DNS_MAX_REQUESTS
#define DNS_MAX_REQUESTS DNS_TABLE_SIZE
#else
#if DNS_MAX_REQUESTS > 255
#error DNS_MAX_REQUESTS must fit into an u8_t
#endif
#endif
#else
#define DNS_MAX_REQUESTS DNS_TABLE_SIZE
#endif
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_RAND_SRC_PORT) != 0)
#ifndef DNS_MAX_SOURCE_PORTS
#define DNS_MAX_SOURCE_PORTS DNS_MAX_REQUESTS
#else
#if DNS_MAX_SOURCE_PORTS > 255
#error DNS_MAX_SOURCE_PORTS must fit into an u8_t
#endif
#endif
#else
#ifdef DNS_MAX_SOURCE_PORTS
#undef DNS_MAX_SOURCE_PORTS
#endif
#define DNS_MAX_SOURCE_PORTS 1
#endif
#if LWIP_IPV4 && LWIP_IPV6
#define LWIP_DNS_ADDRTYPE_IS_IPV6(t) (((t) == LWIP_DNS_ADDRTYPE_IPV6_IPV4) || ((t) == LWIP_DNS_ADDRTYPE_IPV6))
#define LWIP_DNS_ADDRTYPE_MATCH_IP(t, ip) (IP_IS_V6_VAL(ip) ? LWIP_DNS_ADDRTYPE_IS_IPV6(t) : (!LWIP_DNS_ADDRTYPE_IS_IPV6(t)))
#define LWIP_DNS_ADDRTYPE_ARG(x) , x
#define LWIP_DNS_ADDRTYPE_ARG_OR_ZERO(x) x
#define LWIP_DNS_SET_ADDRTYPE(x, y) do { x = y; } while(0)
#else
#if LWIP_IPV6
#define LWIP_DNS_ADDRTYPE_IS_IPV6(t) 1
#else
#define LWIP_DNS_ADDRTYPE_IS_IPV6(t) 0
#endif
#define LWIP_DNS_ADDRTYPE_MATCH_IP(t, ip) 1
#define LWIP_DNS_ADDRTYPE_ARG(x)
#define LWIP_DNS_ADDRTYPE_ARG_OR_ZERO(x) 0
#define LWIP_DNS_SET_ADDRTYPE(x, y)
#endif
#if LWIP_DNS_SUPPORT_MDNS_QUERIES
#define LWIP_DNS_ISMDNS_ARG(x) , x
#else
#define LWIP_DNS_ISMDNS_ARG(x)
#endif
struct dns_query {
u16_t type;
u16_t cls;
};
#define SIZEOF_DNS_QUERY 4
struct dns_answer {
u16_t type;
u16_t cls;
u32_t ttl;
u16_t len;
};
#define SIZEOF_DNS_ANSWER 10
#define SIZEOF_DNS_ANSWER_ASSERT 12
typedef enum {
DNS_STATE_UNUSED = 0,
DNS_STATE_NEW = 1,
DNS_STATE_ASKING = 2,
DNS_STATE_DONE = 3
} dns_state_enum_t;
struct dns_table_entry {
u32_t ttl;
ip_addr_t ipaddr;
u16_t txid;
u8_t state;
u8_t server_idx;
u8_t tmr;
u8_t retries;
u8_t seqno;
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_RAND_SRC_PORT) != 0)
u8_t pcb_idx;
#endif
char name[DNS_MAX_NAME_LENGTH];
#if LWIP_IPV4 && LWIP_IPV6
u8_t reqaddrtype;
#endif
#if LWIP_DNS_SUPPORT_MDNS_QUERIES
u8_t is_mdns;
#endif
};
struct dns_req_entry {
dns_found_callback found;
void *arg;
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_NO_MULTIPLE_OUTSTANDING) != 0)
u8_t dns_table_idx;
#endif
#if LWIP_IPV4 && LWIP_IPV6
u8_t reqaddrtype;
#endif
};
#if DNS_LOCAL_HOSTLIST
#if DNS_LOCAL_HOSTLIST_IS_DYNAMIC
static struct local_hostlist_entry *local_hostlist_dynamic;
#else
#ifndef DNS_LOCAL_HOSTLIST_STORAGE_PRE
#define DNS_LOCAL_HOSTLIST_STORAGE_PRE static
#endif
#ifndef DNS_LOCAL_HOSTLIST_STORAGE_POST
#define DNS_LOCAL_HOSTLIST_STORAGE_POST
#endif
DNS_LOCAL_HOSTLIST_STORAGE_PRE struct local_hostlist_entry local_hostlist_static[]
DNS_LOCAL_HOSTLIST_STORAGE_POST = DNS_LOCAL_HOSTLIST_INIT;
#endif
static void dns_init_local(void);
static err_t dns_lookup_local(const char *hostname, ip_addr_t *addr LWIP_DNS_ADDRTYPE_ARG(u8_t dns_addrtype));
#endif
static void dns_recv(void *s, struct udp_pcb *pcb, struct pbuf *p, const ip_addr_t *addr, u16_t port);
static void dns_check_entries(void);
static void dns_call_found(u8_t idx, ip_addr_t *addr);
static struct udp_pcb *dns_pcbs[DNS_MAX_SOURCE_PORTS];
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_RAND_SRC_PORT) != 0)
static u8_t dns_last_pcb_idx;
#endif
static u8_t dns_seqno;
static struct dns_table_entry dns_table[DNS_TABLE_SIZE];
static struct dns_req_entry dns_requests[DNS_MAX_REQUESTS];
static ip_addr_t dns_servers[DNS_MAX_SERVERS];
#if LWIP_IPV4
const ip_addr_t dns_mquery_v4group = DNS_MQUERY_IPV4_GROUP_INIT;
#endif
#if LWIP_IPV6
const ip_addr_t dns_mquery_v6group = DNS_MQUERY_IPV6_GROUP_INIT;
#endif
void
dns_init(void)
{
#ifdef DNS_SERVER_ADDRESS
ip_addr_t dnsserver;
DNS_SERVER_ADDRESS(&dnsserver);
dns_setserver(0, &dnsserver);
#endif
LWIP_ASSERT("sanity check SIZEOF_DNS_QUERY",
sizeof(struct dns_query) == SIZEOF_DNS_QUERY);
LWIP_ASSERT("sanity check SIZEOF_DNS_ANSWER",
sizeof(struct dns_answer) <= SIZEOF_DNS_ANSWER_ASSERT);
LWIP_DEBUGF(DNS_DEBUG, ("dns_init: initializing\n"));
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_RAND_SRC_PORT) == 0)
if (dns_pcbs[0] == NULL) {
dns_pcbs[0] = udp_new_ip_type(IPADDR_TYPE_ANY);
LWIP_ASSERT("dns_pcbs[0] != NULL", dns_pcbs[0] != NULL);
LWIP_ASSERT("For implicit initialization to work, DNS_STATE_UNUSED needs to be 0",
DNS_STATE_UNUSED == 0);
udp_bind(dns_pcbs[0], IP_ANY_TYPE, 0);
udp_recv(dns_pcbs[0], dns_recv, NULL);
}
#endif
#if DNS_LOCAL_HOSTLIST
dns_init_local();
#endif
}
void
dns_setserver(u8_t numdns, const ip_addr_t *dnsserver)
{
if (numdns < DNS_MAX_SERVERS) {
if (dnsserver != NULL) {
dns_servers[numdns] = (*dnsserver);
} else {
dns_servers[numdns] = *IP_ADDR_ANY;
}
}
}
const ip_addr_t *
dns_getserver(u8_t numdns)
{
if (numdns < DNS_MAX_SERVERS) {
return &dns_servers[numdns];
} else {
return IP_ADDR_ANY;
}
}
void
dns_tmr(void)
{
LWIP_DEBUGF(DNS_DEBUG, ("dns_tmr: dns_check_entries\n"));
dns_check_entries();
}
#if DNS_LOCAL_HOSTLIST
static void
dns_init_local(void)
{
#if DNS_LOCAL_HOSTLIST_IS_DYNAMIC && defined(DNS_LOCAL_HOSTLIST_INIT)
size_t i;
struct local_hostlist_entry *entry;
struct local_hostlist_entry local_hostlist_init[] = DNS_LOCAL_HOSTLIST_INIT;
size_t namelen;
for (i = 0; i < LWIP_ARRAYSIZE(local_hostlist_init); i++) {
struct local_hostlist_entry *init_entry = &local_hostlist_init[i];
LWIP_ASSERT("invalid host name (NULL)", init_entry->name != NULL);
namelen = strlen(init_entry->name);
LWIP_ASSERT("namelen <= DNS_LOCAL_HOSTLIST_MAX_NAMELEN", namelen <= DNS_LOCAL_HOSTLIST_MAX_NAMELEN);
entry = (struct local_hostlist_entry *)memp_malloc(MEMP_LOCALHOSTLIST);
LWIP_ASSERT("mem-error in dns_init_local", entry != NULL);
if (entry != NULL) {
char *entry_name = (char *)entry + sizeof(struct local_hostlist_entry);
MEMCPY(entry_name, init_entry->name, namelen);
entry_name[namelen] = 0;
entry->name = entry_name;
entry->addr = init_entry->addr;
entry->next = local_hostlist_dynamic;
local_hostlist_dynamic = entry;
}
}
#endif
}
size_t
dns_local_iterate(dns_found_callback iterator_fn, void *iterator_arg)
{
size_t i;
#if DNS_LOCAL_HOSTLIST_IS_DYNAMIC
struct local_hostlist_entry *entry = local_hostlist_dynamic;
i = 0;
while (entry != NULL) {
if (iterator_fn != NULL) {
iterator_fn(entry->name, &entry->addr, iterator_arg);
}
i++;
entry = entry->next;
}
#else
for (i = 0; i < LWIP_ARRAYSIZE(local_hostlist_static); i++) {
if (iterator_fn != NULL) {
iterator_fn(local_hostlist_static[i].name, &local_hostlist_static[i].addr, iterator_arg);
}
}
#endif
return i;
}
err_t
dns_local_lookup(const char *hostname, ip_addr_t *addr, u8_t dns_addrtype)
{
LWIP_UNUSED_ARG(dns_addrtype);
return dns_lookup_local(hostname, addr LWIP_DNS_ADDRTYPE_ARG(dns_addrtype));
}
static err_t
dns_lookup_local(const char *hostname, ip_addr_t *addr LWIP_DNS_ADDRTYPE_ARG(u8_t dns_addrtype))
{
#if DNS_LOCAL_HOSTLIST_IS_DYNAMIC
struct local_hostlist_entry *entry = local_hostlist_dynamic;
while (entry != NULL) {
if ((lwip_stricmp(entry->name, hostname) == 0) &&
LWIP_DNS_ADDRTYPE_MATCH_IP(dns_addrtype, entry->addr)) {
if (addr) {
ip_addr_copy(*addr, entry->addr);
}
return ERR_OK;
}
entry = entry->next;
}
#else
size_t i;
for (i = 0; i < LWIP_ARRAYSIZE(local_hostlist_static); i++) {
if ((lwip_stricmp(local_hostlist_static[i].name, hostname) == 0) &&
LWIP_DNS_ADDRTYPE_MATCH_IP(dns_addrtype, local_hostlist_static[i].addr)) {
if (addr) {
ip_addr_copy(*addr, local_hostlist_static[i].addr);
}
return ERR_OK;
}
}
#endif
return ERR_ARG;
}
#if DNS_LOCAL_HOSTLIST_IS_DYNAMIC
int
dns_local_removehost(const char *hostname, const ip_addr_t *addr)
{
int removed = 0;
struct local_hostlist_entry *entry = local_hostlist_dynamic;
struct local_hostlist_entry *last_entry = NULL;
while (entry != NULL) {
if (((hostname == NULL) || !lwip_stricmp(entry->name, hostname)) &&
((addr == NULL) || ip_addr_cmp(&entry->addr, addr))) {
struct local_hostlist_entry *free_entry;
if (last_entry != NULL) {
last_entry->next = entry->next;
} else {
local_hostlist_dynamic = entry->next;
}
free_entry = entry;
entry = entry->next;
memp_free(MEMP_LOCALHOSTLIST, free_entry);
removed++;
} else {
last_entry = entry;
entry = entry->next;
}
}
return removed;
}
err_t
dns_local_addhost(const char *hostname, const ip_addr_t *addr)
{
struct local_hostlist_entry *entry;
size_t namelen;
char *entry_name;
LWIP_ASSERT("invalid host name (NULL)", hostname != NULL);
namelen = strlen(hostname);
LWIP_ASSERT("namelen <= DNS_LOCAL_HOSTLIST_MAX_NAMELEN", namelen <= DNS_LOCAL_HOSTLIST_MAX_NAMELEN);
entry = (struct local_hostlist_entry *)memp_malloc(MEMP_LOCALHOSTLIST);
if (entry == NULL) {
return ERR_MEM;
}
entry_name = (char *)entry + sizeof(struct local_hostlist_entry);
MEMCPY(entry_name, hostname, namelen);
entry_name[namelen] = 0;
entry->name = entry_name;
ip_addr_copy(entry->addr, *addr);
entry->next = local_hostlist_dynamic;
local_hostlist_dynamic = entry;
return ERR_OK;
}
#endif
#endif
static err_t
dns_lookup(const char *name, ip_addr_t *addr LWIP_DNS_ADDRTYPE_ARG(u8_t dns_addrtype))
{
u8_t i;
#if DNS_LOCAL_HOSTLIST
if (dns_lookup_local(name, addr LWIP_DNS_ADDRTYPE_ARG(dns_addrtype)) == ERR_OK) {
return ERR_OK;
}
#endif
#ifdef DNS_LOOKUP_LOCAL_EXTERN
if (DNS_LOOKUP_LOCAL_EXTERN(name, addr, LWIP_DNS_ADDRTYPE_ARG_OR_ZERO(dns_addrtype)) == ERR_OK) {
return ERR_OK;
}
#endif
for (i = 0; i < DNS_TABLE_SIZE; ++i) {
if ((dns_table[i].state == DNS_STATE_DONE) &&
(lwip_strnicmp(name, dns_table[i].name, sizeof(dns_table[i].name)) == 0) &&
LWIP_DNS_ADDRTYPE_MATCH_IP(dns_addrtype, dns_table[i].ipaddr)) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_lookup: \"%s\": found = ", name));
ip_addr_debug_print_val(DNS_DEBUG, dns_table[i].ipaddr);
LWIP_DEBUGF(DNS_DEBUG, ("\n"));
if (addr) {
ip_addr_copy(*addr, dns_table[i].ipaddr);
}
return ERR_OK;
}
}
return ERR_ARG;
}
static u16_t
dns_compare_name(const char *query, struct pbuf *p, u16_t start_offset)
{
int n;
u16_t response_offset = start_offset;
do {
n = pbuf_try_get_at(p, response_offset);
if ((n < 0) || (response_offset == 0xFFFF)) {
return 0xFFFF;
}
response_offset++;
if ((n & 0xc0) == 0xc0) {
return 0xFFFF;
} else {
while (n > 0) {
int c = pbuf_try_get_at(p, response_offset);
if (c < 0) {
return 0xFFFF;
}
if (lwip_tolower((*query)) != lwip_tolower((u8_t)c)) {
return 0xFFFF;
}
if (response_offset == 0xFFFF) {
return 0xFFFF;
}
response_offset++;
++query;
--n;
}
++query;
}
n = pbuf_try_get_at(p, response_offset);
if (n < 0) {
return 0xFFFF;
}
} while (n != 0);
if (response_offset == 0xFFFF) {
return 0xFFFF;
}
return (u16_t)(response_offset + 1);
}
static u16_t
dns_skip_name(struct pbuf *p, u16_t query_idx)
{
int n;
u16_t offset = query_idx;
do {
n = pbuf_try_get_at(p, offset++);
if ((n < 0) || (offset == 0)) {
return 0xFFFF;
}
if ((n & 0xc0) == 0xc0) {
break;
} else {
if (offset + n >= p->tot_len) {
return 0xFFFF;
}
offset = (u16_t)(offset + n);
}
n = pbuf_try_get_at(p, offset);
if (n < 0) {
return 0xFFFF;
}
} while (n != 0);
if (offset == 0xFFFF) {
return 0xFFFF;
}
return (u16_t)(offset + 1);
}
static err_t
dns_send(u8_t idx)
{
err_t err;
struct dns_hdr hdr;
struct dns_query qry;
struct pbuf *p;
u16_t query_idx, copy_len;
const char *hostname, *hostname_part;
u8_t n;
u8_t pcb_idx;
struct dns_table_entry *entry = &dns_table[idx];
LWIP_DEBUGF(DNS_DEBUG, ("dns_send: dns_servers[%"U16_F"] \"%s\": request\n",
(u16_t)(entry->server_idx), entry->name));
LWIP_ASSERT("dns server out of array", entry->server_idx < DNS_MAX_SERVERS);
if (ip_addr_isany_val(dns_servers[entry->server_idx])
#if LWIP_DNS_SUPPORT_MDNS_QUERIES
&& !entry->is_mdns
#endif
) {
dns_call_found(idx, NULL);
entry->state = DNS_STATE_UNUSED;
return ERR_OK;
}
p = pbuf_alloc(PBUF_TRANSPORT, (u16_t)(SIZEOF_DNS_HDR + strlen(entry->name) + 2 +
SIZEOF_DNS_QUERY), PBUF_RAM);
if (p != NULL) {
const ip_addr_t *dst;
u16_t dst_port;
memset(&hdr, 0, SIZEOF_DNS_HDR);
hdr.id = lwip_htons(entry->txid);
hdr.flags1 = DNS_FLAG1_RD;
hdr.numquestions = PP_HTONS(1);
pbuf_take(p, &hdr, SIZEOF_DNS_HDR);
hostname = entry->name;
--hostname;
query_idx = SIZEOF_DNS_HDR;
do {
++hostname;
hostname_part = hostname;
for (n = 0; *hostname != '.' && *hostname != 0; ++hostname) {
++n;
}
copy_len = (u16_t)(hostname - hostname_part);
if (query_idx + n + 1 > 0xFFFF) {
goto overflow_return;
}
pbuf_put_at(p, query_idx, n);
pbuf_take_at(p, hostname_part, copy_len, (u16_t)(query_idx + 1));
query_idx = (u16_t)(query_idx + n + 1);
} while (*hostname != 0);
pbuf_put_at(p, query_idx, 0);
query_idx++;
if (LWIP_DNS_ADDRTYPE_IS_IPV6(entry->reqaddrtype)) {
qry.type = PP_HTONS(DNS_RRTYPE_AAAA);
} else {
qry.type = PP_HTONS(DNS_RRTYPE_A);
}
qry.cls = PP_HTONS(DNS_RRCLASS_IN);
pbuf_take_at(p, &qry, SIZEOF_DNS_QUERY, query_idx);
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_RAND_SRC_PORT) != 0)
pcb_idx = entry->pcb_idx;
#else
pcb_idx = 0;
#endif
LWIP_DEBUGF(DNS_DEBUG, ("sending DNS request ID %d for name \"%s\" to server %d\r\n",
entry->txid, entry->name, entry->server_idx));
#if LWIP_DNS_SUPPORT_MDNS_QUERIES
if (entry->is_mdns) {
dst_port = DNS_MQUERY_PORT;
#if LWIP_IPV6
if (LWIP_DNS_ADDRTYPE_IS_IPV6(entry->reqaddrtype)) {
dst = &dns_mquery_v6group;
}
#endif
#if LWIP_IPV4 && LWIP_IPV6
else
#endif
#if LWIP_IPV4
{
dst = &dns_mquery_v4group;
}
#endif
} else
#endif
{
dst_port = DNS_SERVER_PORT;
dst = &dns_servers[entry->server_idx];
}
err = udp_sendto(dns_pcbs[pcb_idx], p, dst, dst_port);
pbuf_free(p);
} else {
err = ERR_MEM;
}
return err;
overflow_return:
pbuf_free(p);
return ERR_VAL;
}
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_RAND_SRC_PORT) != 0)
static struct udp_pcb *
dns_alloc_random_port(void)
{
err_t err;
struct udp_pcb *pcb;
pcb = udp_new_ip_type(IPADDR_TYPE_ANY);
if (pcb == NULL) {
return NULL;
}
do {
u16_t port = (u16_t)DNS_RAND_TXID();
if (DNS_PORT_ALLOWED(port)) {
err = udp_bind(pcb, IP_ANY_TYPE, port);
} else {
err = ERR_USE;
}
} while (err == ERR_USE);
if (err != ERR_OK) {
udp_remove(pcb);
return NULL;
}
udp_recv(pcb, dns_recv, NULL);
return pcb;
}
static u8_t
dns_alloc_pcb(void)
{
u8_t i;
u8_t idx;
for (i = 0; i < DNS_MAX_SOURCE_PORTS; i++) {
if (dns_pcbs[i] == NULL) {
break;
}
}
if (i < DNS_MAX_SOURCE_PORTS) {
dns_pcbs[i] = dns_alloc_random_port();
if (dns_pcbs[i] != NULL) {
dns_last_pcb_idx = i;
return i;
}
}
for (i = 0, idx = (u8_t)(dns_last_pcb_idx + 1); i < DNS_MAX_SOURCE_PORTS; i++, idx++) {
if (idx >= DNS_MAX_SOURCE_PORTS) {
idx = 0;
}
if (dns_pcbs[idx] != NULL) {
dns_last_pcb_idx = idx;
return idx;
}
}
return DNS_MAX_SOURCE_PORTS;
}
#endif
static void
dns_call_found(u8_t idx, ip_addr_t *addr)
{
#if ((LWIP_DNS_SECURE & (LWIP_DNS_SECURE_NO_MULTIPLE_OUTSTANDING | LWIP_DNS_SECURE_RAND_SRC_PORT)) != 0)
u8_t i;
#endif
#if LWIP_IPV4 && LWIP_IPV6
if (addr != NULL) {
if (IP_IS_V6_VAL(*addr)) {
LWIP_ASSERT("invalid response", LWIP_DNS_ADDRTYPE_IS_IPV6(dns_table[idx].reqaddrtype));
dns_table[idx].reqaddrtype = LWIP_DNS_ADDRTYPE_IPV6;
} else {
LWIP_ASSERT("invalid response", !LWIP_DNS_ADDRTYPE_IS_IPV6(dns_table[idx].reqaddrtype));
dns_table[idx].reqaddrtype = LWIP_DNS_ADDRTYPE_IPV4;
}
}
#endif
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_NO_MULTIPLE_OUTSTANDING) != 0)
for (i = 0; i < DNS_MAX_REQUESTS; i++) {
if (dns_requests[i].found && (dns_requests[i].dns_table_idx == idx)) {
(*dns_requests[i].found)(dns_table[idx].name, addr, dns_requests[i].arg);
dns_requests[i].found = NULL;
}
}
#else
if (dns_requests[idx].found) {
(*dns_requests[idx].found)(dns_table[idx].name, addr, dns_requests[idx].arg);
}
dns_requests[idx].found = NULL;
#endif
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_RAND_SRC_PORT) != 0)
for (i = 0; i < DNS_MAX_REQUESTS; i++) {
if (i == idx) {
continue;
}
if (dns_table[i].state == DNS_STATE_ASKING) {
if (dns_table[i].pcb_idx == dns_table[idx].pcb_idx) {
dns_table[idx].pcb_idx = DNS_MAX_SOURCE_PORTS;
break;
}
}
}
if (dns_table[idx].pcb_idx < DNS_MAX_SOURCE_PORTS) {
udp_remove(dns_pcbs[dns_table[idx].pcb_idx]);
dns_pcbs[dns_table[idx].pcb_idx] = NULL;
dns_table[idx].pcb_idx = DNS_MAX_SOURCE_PORTS;
}
#endif
}
static u16_t
dns_create_txid(void)
{
u16_t txid;
u8_t i;
again:
txid = (u16_t)DNS_RAND_TXID();
for (i = 0; i < DNS_TABLE_SIZE; i++) {
if ((dns_table[i].state == DNS_STATE_ASKING) &&
(dns_table[i].txid == txid)) {
goto again;
}
}
return txid;
}
static u8_t
dns_backupserver_available(struct dns_table_entry *pentry)
{
u8_t ret = 0;
if (pentry) {
if ((pentry->server_idx + 1 < DNS_MAX_SERVERS) && !ip_addr_isany_val(dns_servers[pentry->server_idx + 1])) {
ret = 1;
}
}
return ret;
}
static void
dns_check_entry(u8_t i)
{
err_t err;
struct dns_table_entry *entry = &dns_table[i];
LWIP_ASSERT("array index out of bounds", i < DNS_TABLE_SIZE);
switch (entry->state) {
case DNS_STATE_NEW:
entry->txid = dns_create_txid();
entry->state = DNS_STATE_ASKING;
entry->server_idx = 0;
entry->tmr = 1;
entry->retries = 0;
err = dns_send(i);
if (err != ERR_OK) {
LWIP_DEBUGF(DNS_DEBUG | LWIP_DBG_LEVEL_WARNING,
("dns_send returned error: %s\n", lwip_strerr(err)));
}
break;
case DNS_STATE_ASKING:
if (--entry->tmr == 0) {
if (++entry->retries == DNS_MAX_RETRIES) {
if (dns_backupserver_available(entry)
#if LWIP_DNS_SUPPORT_MDNS_QUERIES
&& !entry->is_mdns
#endif
) {
entry->server_idx++;
entry->tmr = 1;
entry->retries = 0;
} else {
LWIP_DEBUGF(DNS_DEBUG, ("dns_check_entry: \"%s\": timeout\n", entry->name));
dns_call_found(i, NULL);
entry->state = DNS_STATE_UNUSED;
break;
}
} else {
entry->tmr = entry->retries;
}
err = dns_send(i);
if (err != ERR_OK) {
LWIP_DEBUGF(DNS_DEBUG | LWIP_DBG_LEVEL_WARNING,
("dns_send returned error: %s\n", lwip_strerr(err)));
}
}
break;
case DNS_STATE_DONE:
if ((entry->ttl == 0) || (--entry->ttl == 0)) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_check_entry: \"%s\": flush\n", entry->name));
entry->state = DNS_STATE_UNUSED;
}
break;
case DNS_STATE_UNUSED:
break;
default:
LWIP_ASSERT("unknown dns_table entry state:", 0);
break;
}
}
static void
dns_check_entries(void)
{
u8_t i;
for (i = 0; i < DNS_TABLE_SIZE; ++i) {
dns_check_entry(i);
}
}
static void
dns_correct_response(u8_t idx, u32_t ttl)
{
struct dns_table_entry *entry = &dns_table[idx];
entry->state = DNS_STATE_DONE;
LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": response = ", entry->name));
ip_addr_debug_print_val(DNS_DEBUG, entry->ipaddr);
LWIP_DEBUGF(DNS_DEBUG, ("\n"));
entry->ttl = ttl;
if (entry->ttl > DNS_MAX_TTL) {
entry->ttl = DNS_MAX_TTL;
}
dns_call_found(idx, &entry->ipaddr);
if (entry->ttl == 0) {
if (entry->state == DNS_STATE_DONE) {
entry->state = DNS_STATE_UNUSED;
}
}
}
static void
dns_recv(void *arg, struct udp_pcb *pcb, struct pbuf *p, const ip_addr_t *addr, u16_t port)
{
u8_t i;
u16_t txid;
u16_t res_idx;
struct dns_hdr hdr;
struct dns_answer ans;
struct dns_query qry;
u16_t nquestions, nanswers;
LWIP_UNUSED_ARG(arg);
LWIP_UNUSED_ARG(pcb);
LWIP_UNUSED_ARG(port);
if (p->tot_len < (SIZEOF_DNS_HDR + SIZEOF_DNS_QUERY)) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: pbuf too small\n"));
goto ignore_packet;
}
if (pbuf_copy_partial(p, &hdr, SIZEOF_DNS_HDR, 0) == SIZEOF_DNS_HDR) {
txid = lwip_htons(hdr.id);
for (i = 0; i < DNS_TABLE_SIZE; i++) {
struct dns_table_entry *entry = &dns_table[i];
if ((entry->state == DNS_STATE_ASKING) &&
(entry->txid == txid)) {
nquestions = lwip_htons(hdr.numquestions);
nanswers = lwip_htons(hdr.numanswers);
if ((hdr.flags1 & DNS_FLAG1_RESPONSE) == 0) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": not a response\n", entry->name));
goto ignore_packet;
}
if (nquestions != 1) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": response not match to query\n", entry->name));
goto ignore_packet;
}
#if LWIP_DNS_SUPPORT_MDNS_QUERIES
if (!entry->is_mdns)
#endif
{
if (!ip_addr_cmp(addr, &dns_servers[entry->server_idx])) {
goto ignore_packet;
}
}
res_idx = dns_compare_name(entry->name, p, SIZEOF_DNS_HDR);
if (res_idx == 0xFFFF) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": response not match to query\n", entry->name));
goto ignore_packet;
}
if (pbuf_copy_partial(p, &qry, SIZEOF_DNS_QUERY, res_idx) != SIZEOF_DNS_QUERY) {
goto ignore_packet;
}
if ((qry.cls != PP_HTONS(DNS_RRCLASS_IN)) ||
(LWIP_DNS_ADDRTYPE_IS_IPV6(entry->reqaddrtype) && (qry.type != PP_HTONS(DNS_RRTYPE_AAAA))) ||
(!LWIP_DNS_ADDRTYPE_IS_IPV6(entry->reqaddrtype) && (qry.type != PP_HTONS(DNS_RRTYPE_A)))) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": response not match to query\n", entry->name));
goto ignore_packet;
}
if (res_idx + SIZEOF_DNS_QUERY > 0xFFFF) {
goto ignore_packet;
}
res_idx = (u16_t)(res_idx + SIZEOF_DNS_QUERY);
if (hdr.flags2 & DNS_FLAG2_ERR_MASK) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": error in flags\n", entry->name));
if (dns_backupserver_available(entry)) {
entry->retries = DNS_MAX_RETRIES-1;
entry->tmr = 1;
dns_check_entry(i);
goto ignore_packet;
}
} else {
while ((nanswers > 0) && (res_idx < p->tot_len)) {
res_idx = dns_skip_name(p, res_idx);
if (res_idx == 0xFFFF) {
goto ignore_packet;
}
if (pbuf_copy_partial(p, &ans, SIZEOF_DNS_ANSWER, res_idx) != SIZEOF_DNS_ANSWER) {
goto ignore_packet;
}
if (res_idx + SIZEOF_DNS_ANSWER > 0xFFFF) {
goto ignore_packet;
}
res_idx = (u16_t)(res_idx + SIZEOF_DNS_ANSWER);
if (ans.cls == PP_HTONS(DNS_RRCLASS_IN)) {
#if LWIP_IPV4
if ((ans.type == PP_HTONS(DNS_RRTYPE_A)) && (ans.len == PP_HTONS(sizeof(ip4_addr_t)))) {
#if LWIP_IPV4 && LWIP_IPV6
if (!LWIP_DNS_ADDRTYPE_IS_IPV6(entry->reqaddrtype))
#endif
{
ip4_addr_t ip4addr;
if (pbuf_copy_partial(p, &ip4addr, sizeof(ip4_addr_t), res_idx) != sizeof(ip4_addr_t)) {
goto ignore_packet;
}
ip_addr_copy_from_ip4(dns_table[i].ipaddr, ip4addr);
pbuf_free(p);
dns_correct_response(i, lwip_ntohl(ans.ttl));
return;
}
}
#endif
#if LWIP_IPV6
if ((ans.type == PP_HTONS(DNS_RRTYPE_AAAA)) && (ans.len == PP_HTONS(sizeof(ip6_addr_p_t)))) {
#if LWIP_IPV4 && LWIP_IPV6
if (LWIP_DNS_ADDRTYPE_IS_IPV6(entry->reqaddrtype))
#endif
{
ip6_addr_p_t ip6addr;
if (pbuf_copy_partial(p, &ip6addr, sizeof(ip6_addr_p_t), res_idx) != sizeof(ip6_addr_p_t)) {
goto ignore_packet;
}
ip_addr_copy_from_ip6_packed(dns_table[i].ipaddr, ip6addr);
pbuf_free(p);
dns_correct_response(i, lwip_ntohl(ans.ttl));
return;
}
}
#endif
}
if ((int)(res_idx + lwip_htons(ans.len)) > 0xFFFF) {
goto ignore_packet;
}
res_idx = (u16_t)(res_idx + lwip_htons(ans.len));
--nanswers;
}
#if LWIP_IPV4 && LWIP_IPV6
if ((entry->reqaddrtype == LWIP_DNS_ADDRTYPE_IPV4_IPV6) ||
(entry->reqaddrtype == LWIP_DNS_ADDRTYPE_IPV6_IPV4)) {
if (entry->reqaddrtype == LWIP_DNS_ADDRTYPE_IPV4_IPV6) {
dns_table[i].reqaddrtype = LWIP_DNS_ADDRTYPE_IPV6;
} else {
dns_table[i].reqaddrtype = LWIP_DNS_ADDRTYPE_IPV4;
}
pbuf_free(p);
dns_table[i].state = DNS_STATE_NEW;
dns_check_entry(i);
return;
}
#endif
LWIP_DEBUGF(DNS_DEBUG, ("dns_recv: \"%s\": error in response\n", entry->name));
}
pbuf_free(p);
dns_call_found(i, NULL);
dns_table[i].state = DNS_STATE_UNUSED;
return;
}
}
}
ignore_packet:
pbuf_free(p);
return;
}
static err_t
dns_enqueue(const char *name, size_t hostnamelen, dns_found_callback found,
void *callback_arg LWIP_DNS_ADDRTYPE_ARG(u8_t dns_addrtype) LWIP_DNS_ISMDNS_ARG(u8_t is_mdns))
{
u8_t i;
u8_t lseq, lseqi;
struct dns_table_entry *entry = NULL;
size_t namelen;
struct dns_req_entry *req;
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_NO_MULTIPLE_OUTSTANDING) != 0)
u8_t r;
for (i = 0; i < DNS_TABLE_SIZE; i++) {
if ((dns_table[i].state == DNS_STATE_ASKING) &&
(lwip_strnicmp(name, dns_table[i].name, sizeof(dns_table[i].name)) == 0)) {
#if LWIP_IPV4 && LWIP_IPV6
if (dns_table[i].reqaddrtype != dns_addrtype) {
continue;
}
#endif
for (r = 0; r < DNS_MAX_REQUESTS; r++) {
if (dns_requests[r].found == 0) {
dns_requests[r].found = found;
dns_requests[r].arg = callback_arg;
dns_requests[r].dns_table_idx = i;
LWIP_DNS_SET_ADDRTYPE(dns_requests[r].reqaddrtype, dns_addrtype);
LWIP_DEBUGF(DNS_DEBUG, ("dns_enqueue: \"%s\": duplicate request\n", name));
return ERR_INPROGRESS;
}
}
}
}
#endif
lseq = 0;
lseqi = DNS_TABLE_SIZE;
for (i = 0; i < DNS_TABLE_SIZE; ++i) {
entry = &dns_table[i];
if (entry->state == DNS_STATE_UNUSED) {
break;
}
if (entry->state == DNS_STATE_DONE) {
u8_t age = (u8_t)(dns_seqno - entry->seqno);
if (age > lseq) {
lseq = age;
lseqi = i;
}
}
}
if (i == DNS_TABLE_SIZE) {
if ((lseqi >= DNS_TABLE_SIZE) || (dns_table[lseqi].state != DNS_STATE_DONE)) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_enqueue: \"%s\": DNS entries table is full\n", name));
return ERR_MEM;
} else {
i = lseqi;
entry = &dns_table[i];
}
}
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_NO_MULTIPLE_OUTSTANDING) != 0)
req = NULL;
for (r = 0; r < DNS_MAX_REQUESTS; r++) {
if (dns_requests[r].found == NULL) {
req = &dns_requests[r];
break;
}
}
if (req == NULL) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_enqueue: \"%s\": DNS request entries table is full\n", name));
return ERR_MEM;
}
req->dns_table_idx = i;
#else
req = &dns_requests[i];
#endif
LWIP_DEBUGF(DNS_DEBUG, ("dns_enqueue: \"%s\": use DNS entry %"U16_F"\n", name, (u16_t)(i)));
entry->state = DNS_STATE_NEW;
entry->seqno = dns_seqno;
LWIP_DNS_SET_ADDRTYPE(entry->reqaddrtype, dns_addrtype);
LWIP_DNS_SET_ADDRTYPE(req->reqaddrtype, dns_addrtype);
req->found = found;
req->arg = callback_arg;
namelen = LWIP_MIN(hostnamelen, DNS_MAX_NAME_LENGTH - 1);
MEMCPY(entry->name, name, namelen);
entry->name[namelen] = 0;
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_RAND_SRC_PORT) != 0)
entry->pcb_idx = dns_alloc_pcb();
if (entry->pcb_idx >= DNS_MAX_SOURCE_PORTS) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_enqueue: \"%s\": failed to allocate a pcb\n", name));
entry->state = DNS_STATE_UNUSED;
req->found = NULL;
return ERR_MEM;
}
LWIP_DEBUGF(DNS_DEBUG, ("dns_enqueue: \"%s\": use DNS pcb %"U16_F"\n", name, (u16_t)(entry->pcb_idx)));
#endif
#if LWIP_DNS_SUPPORT_MDNS_QUERIES
entry->is_mdns = is_mdns;
#endif
dns_seqno++;
dns_check_entry(i);
return ERR_INPROGRESS;
}
err_t
dns_gethostbyname(const char *hostname, ip_addr_t *addr, dns_found_callback found,
void *callback_arg)
{
return dns_gethostbyname_addrtype(hostname, addr, found, callback_arg, LWIP_DNS_ADDRTYPE_DEFAULT);
}
err_t
dns_gethostbyname_addrtype(const char *hostname, ip_addr_t *addr, dns_found_callback found,
void *callback_arg, u8_t dns_addrtype)
{
size_t hostnamelen;
#if LWIP_DNS_SUPPORT_MDNS_QUERIES
u8_t is_mdns;
#endif
if ((addr == NULL) ||
(!hostname) || (!hostname[0])) {
return ERR_ARG;
}
#if ((LWIP_DNS_SECURE & LWIP_DNS_SECURE_RAND_SRC_PORT) == 0)
if (dns_pcbs[0] == NULL) {
return ERR_ARG;
}
#endif
hostnamelen = strlen(hostname);
if (hostnamelen >= DNS_MAX_NAME_LENGTH) {
LWIP_DEBUGF(DNS_DEBUG, ("dns_gethostbyname: name too long to resolve"));
return ERR_ARG;
}
#if LWIP_HAVE_LOOPIF
if (strcmp(hostname, "localhost") == 0) {
ip_addr_set_loopback(LWIP_DNS_ADDRTYPE_IS_IPV6(dns_addrtype), addr);
return ERR_OK;
}
#endif
if (ipaddr_aton(hostname, addr)) {
#if LWIP_IPV4 && LWIP_IPV6
if ((IP_IS_V6(addr) && (dns_addrtype != LWIP_DNS_ADDRTYPE_IPV4)) ||
(IP_IS_V4(addr) && (dns_addrtype != LWIP_DNS_ADDRTYPE_IPV6)))
#endif
{
return ERR_OK;
}
}
if (dns_lookup(hostname, addr LWIP_DNS_ADDRTYPE_ARG(dns_addrtype)) == ERR_OK) {
return ERR_OK;
}
#if LWIP_IPV4 && LWIP_IPV6
if ((dns_addrtype == LWIP_DNS_ADDRTYPE_IPV4_IPV6) || (dns_addrtype == LWIP_DNS_ADDRTYPE_IPV6_IPV4)) {
u8_t fallback;
if (dns_addrtype == LWIP_DNS_ADDRTYPE_IPV4_IPV6) {
fallback = LWIP_DNS_ADDRTYPE_IPV6;
} else {
fallback = LWIP_DNS_ADDRTYPE_IPV4;
}
if (dns_lookup(hostname, addr LWIP_DNS_ADDRTYPE_ARG(fallback)) == ERR_OK) {
return ERR_OK;
}
}
#else
LWIP_UNUSED_ARG(dns_addrtype);
#endif
#if LWIP_DNS_SUPPORT_MDNS_QUERIES
if (strstr(hostname, ".local") == &hostname[hostnamelen] - 6) {
is_mdns = 1;
} else {
is_mdns = 0;
}
if (!is_mdns)
#endif
{
if (ip_addr_isany_val(dns_servers[0])) {
return ERR_VAL;
}
}
return dns_enqueue(hostname, hostnamelen, found, callback_arg LWIP_DNS_ADDRTYPE_ARG(dns_addrtype)
LWIP_DNS_ISMDNS_ARG(is_mdns));
}
#endif