mdns.c 165 KB

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  1. // Copyright 2015-2016 Espressif Systems (Shanghai) PTE LTD
  2. //
  3. // Licensed under the Apache License, Version 2.0 (the "License");
  4. // you may not use this file except in compliance with the License.
  5. // You may obtain a copy of the License at
  6. // http://www.apache.org/licenses/LICENSE-2.0
  7. //
  8. // Unless required by applicable law or agreed to in writing, software
  9. // distributed under the License is distributed on an "AS IS" BASIS,
  10. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  11. // See the License for the specific language governing permissions and
  12. // limitations under the License.
  13. #include "mdns.h"
  14. #include "mdns_private.h"
  15. #include "mdns_networking.h"
  16. #include "esp_log.h"
  17. #include <string.h>
  18. #include <sys/param.h>
  19. #ifdef MDNS_ENABLE_DEBUG
  20. void mdns_debug_packet(const uint8_t * data, size_t len);
  21. #endif
  22. // Internal size of IPv6 address is defined here as size of AAAA record in mdns packet
  23. // since the ip6_addr_t is defined in lwip and depends on using IPv6 zones
  24. #define _MDNS_SIZEOF_IP6_ADDR (MDNS_ANSWER_AAAA_SIZE)
  25. static const char * MDNS_DEFAULT_DOMAIN = "local";
  26. static const char * MDNS_SUB_STR = "_sub";
  27. mdns_server_t * _mdns_server = NULL;
  28. static const char *TAG = "MDNS";
  29. static volatile TaskHandle_t _mdns_service_task_handle = NULL;
  30. static SemaphoreHandle_t _mdns_service_semaphore = NULL;
  31. static void _mdns_search_finish_done(void);
  32. static mdns_search_once_t * _mdns_search_find_from(mdns_search_once_t * search, mdns_name_t * name, uint16_t type, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol);
  33. static void _mdns_search_result_add_ip(mdns_search_once_t * search, const char * hostname, esp_ip_addr_t * ip, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol);
  34. static void _mdns_search_result_add_srv(mdns_search_once_t * search, const char * hostname, uint16_t port, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol);
  35. static void _mdns_search_result_add_txt(mdns_search_once_t * search, mdns_txt_item_t * txt, size_t txt_count, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol);
  36. static mdns_result_t * _mdns_search_result_add_ptr(mdns_search_once_t * search, const char * instance, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol);
  37. /*
  38. * @brief Internal collection of mdns supported interfaces
  39. *
  40. */
  41. static esp_netif_t * s_esp_netifs[MDNS_IF_MAX] = {};
  42. /*
  43. * @brief Convert mdns if to esp-netif handle
  44. */
  45. esp_netif_t *_mdns_get_esp_netif(mdns_if_t tcpip_if)
  46. {
  47. if (tcpip_if < MDNS_IF_MAX) {
  48. if (s_esp_netifs[tcpip_if] == NULL) {
  49. // if local netif copy is NULL, try to search for the default interface key
  50. if (tcpip_if == MDNS_IF_STA) {
  51. s_esp_netifs[MDNS_IF_STA] = esp_netif_get_handle_from_ifkey("WIFI_STA_DEF");
  52. } else if (tcpip_if == MDNS_IF_AP) {
  53. s_esp_netifs[MDNS_IF_AP] = esp_netif_get_handle_from_ifkey("WIFI_AP_DEF");
  54. #if CONFIG_ETH_ENABLED
  55. } else if (tcpip_if == MDNS_IF_ETH) {
  56. s_esp_netifs[MDNS_IF_ETH] = esp_netif_get_handle_from_ifkey("ETH_DEF");
  57. #endif
  58. }
  59. }
  60. return s_esp_netifs[tcpip_if];
  61. }
  62. return NULL;
  63. }
  64. /*
  65. * @brief Clean internal mdns interface's pointer
  66. */
  67. static inline void _mdns_clean_netif_ptr(mdns_if_t tcpip_if) {
  68. if (tcpip_if < MDNS_IF_MAX) {
  69. s_esp_netifs[tcpip_if] = NULL;
  70. }
  71. }
  72. /*
  73. * @brief Convert esp-netif handle to mdns if
  74. */
  75. static mdns_if_t _mdns_get_if_from_esp_netif(esp_netif_t *interface)
  76. {
  77. for (int i=0; i<MDNS_IF_MAX; ++i) {
  78. if (interface == s_esp_netifs[i])
  79. return i;
  80. }
  81. return MDNS_IF_MAX;
  82. }
  83. static inline bool _str_null_or_empty(const char * str){
  84. return (str == NULL || *str == 0);
  85. }
  86. /*
  87. * @brief Appends/increments a number to name/instance in case of collision
  88. * */
  89. static char * _mdns_mangle_name(char* in) {
  90. char *p = strrchr(in, '-');
  91. int suffix = 0;
  92. if (p == NULL) {
  93. //No - in ``in``
  94. suffix = 2;
  95. } else {
  96. char *endp = NULL;
  97. suffix = strtol(p + 1, &endp, 10);
  98. if (*endp != 0) {
  99. //suffix is not numerical
  100. suffix = 2;
  101. p = NULL; //so we append -suffix to the entire string
  102. }
  103. }
  104. char *ret;
  105. if (p == NULL) {
  106. //need to add -2 to string
  107. ret = malloc(strlen(in) + 3);
  108. if (ret == NULL) {
  109. HOOK_MALLOC_FAILED;
  110. return NULL;
  111. }
  112. sprintf(ret, "%s-2", in);
  113. } else {
  114. ret = malloc(strlen(in) + 2); //one extra byte in case 9-10 or 99-100 etc
  115. if (ret == NULL) {
  116. HOOK_MALLOC_FAILED;
  117. return NULL;
  118. }
  119. strcpy(ret, in);
  120. int baseLen = p - in; //length of 'bla' in 'bla-123'
  121. //overwrite suffix with new suffix
  122. sprintf(ret + baseLen, "-%d", suffix + 1);
  123. }
  124. return ret;
  125. }
  126. /**
  127. * @brief finds service from given service type
  128. * @param server the server
  129. * @param service service type to match
  130. * @param proto proto to match
  131. *
  132. * @return the service item if found or NULL on error
  133. */
  134. static mdns_srv_item_t * _mdns_get_service_item(const char * service, const char * proto)
  135. {
  136. mdns_srv_item_t * s = _mdns_server->services;
  137. while (s) {
  138. if (!strcasecmp(s->service->service, service) && !strcasecmp(s->service->proto, proto)) {
  139. return s;
  140. }
  141. s = s->next;
  142. }
  143. return NULL;
  144. }
  145. static bool _mdns_can_add_more_services(void)
  146. {
  147. mdns_srv_item_t * s = _mdns_server->services;
  148. uint16_t service_num = 0;
  149. while (s) {
  150. service_num ++;
  151. s = s->next;
  152. if (service_num >= MDNS_MAX_SERVICES) {
  153. return false;
  154. }
  155. }
  156. return true;
  157. }
  158. esp_err_t _mdns_send_rx_action(mdns_rx_packet_t * packet)
  159. {
  160. mdns_action_t * action = NULL;
  161. action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  162. if (!action) {
  163. HOOK_MALLOC_FAILED;
  164. return ESP_ERR_NO_MEM;
  165. }
  166. action->type = ACTION_RX_HANDLE;
  167. action->data.rx_handle.packet = packet;
  168. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  169. free(action);
  170. return ESP_ERR_NO_MEM;
  171. }
  172. return ESP_OK;
  173. }
  174. /**
  175. * @brief Get the service name of a service
  176. */
  177. static const char * _mdns_get_service_instance_name(mdns_service_t * service)
  178. {
  179. if (service && !_str_null_or_empty(service->instance)) {
  180. return service->instance;
  181. }
  182. if (_mdns_server && !_str_null_or_empty(_mdns_server->instance)) {
  183. return _mdns_server->instance;
  184. }
  185. if (_mdns_server && !_str_null_or_empty(_mdns_server->hostname)) {
  186. return _mdns_server->hostname;
  187. }
  188. return NULL;
  189. }
  190. /**
  191. * @brief reads MDNS FQDN into mdns_name_t structure
  192. * FQDN is in format: [hostname.|[instance.]_service._proto.]local.
  193. *
  194. * @param packet MDNS packet
  195. * @param start Starting point of FQDN
  196. * @param name mdns_name_t structure to populate
  197. * @param buf temporary char buffer
  198. *
  199. * @return the address after the parsed FQDN in the packet or NULL on error
  200. */
  201. static const uint8_t * _mdns_read_fqdn(const uint8_t * packet, const uint8_t * start, mdns_name_t * name, char * buf)
  202. {
  203. size_t index = 0;
  204. while (start[index]) {
  205. if (name->parts == 4) {
  206. name->invalid = true;
  207. }
  208. uint8_t len = start[index++];
  209. if (len < 0xC0) {
  210. if (len > 63) {
  211. //length can not be more than 63
  212. return NULL;
  213. }
  214. uint8_t i;
  215. for (i=0; i<len; i++) {
  216. buf[i] = start[index++];
  217. }
  218. buf[len] = '\0';
  219. if (name->parts == 1 && buf[0] != '_'
  220. && (strcasecmp(buf, MDNS_DEFAULT_DOMAIN) != 0)
  221. && (strcasecmp(buf, "ip6") != 0)
  222. && (strcasecmp(buf, "in-addr") != 0)) {
  223. strlcat(name->host, ".", sizeof(name->host));
  224. strlcat(name->host, buf, sizeof(name->host));
  225. } else if (strcasecmp(buf, MDNS_SUB_STR) == 0) {
  226. name->sub = 1;
  227. } else if (!name->invalid) {
  228. char* mdns_name_ptrs[]={name->host, name->service, name->proto, name->domain};
  229. memcpy(mdns_name_ptrs[name->parts++], buf, len+1);
  230. }
  231. } else {
  232. size_t address = (((uint16_t)len & 0x3F) << 8) | start[index++];
  233. if ((packet + address) >= start) {
  234. //reference address can not be after where we are
  235. return NULL;
  236. }
  237. if (_mdns_read_fqdn(packet, packet + address, name, buf)) {
  238. return start + index;
  239. }
  240. return NULL;
  241. }
  242. }
  243. return start + index + 1;
  244. }
  245. /**
  246. * @brief sets uint16_t value in a packet
  247. *
  248. * @param packet MDNS packet
  249. * @param index offset of uint16_t value
  250. * @param value the value to set
  251. */
  252. static inline void _mdns_set_u16(uint8_t * packet, uint16_t index, uint16_t value)
  253. {
  254. if ((index + 1) >= MDNS_MAX_PACKET_SIZE) {
  255. return;
  256. }
  257. packet[index] = (value >> 8) & 0xFF;
  258. packet[index+1] = value & 0xFF;
  259. }
  260. /**
  261. * @brief appends byte in a packet, incrementing the index
  262. *
  263. * @param packet MDNS packet
  264. * @param index offset in the packet
  265. * @param value the value to set
  266. *
  267. * @return length of added data: 0 on error or 1 on success
  268. */
  269. static inline uint8_t _mdns_append_u8(uint8_t * packet, uint16_t * index, uint8_t value)
  270. {
  271. if (*index >= MDNS_MAX_PACKET_SIZE) {
  272. return 0;
  273. }
  274. packet[*index] = value;
  275. *index += 1;
  276. return 1;
  277. }
  278. /**
  279. * @brief appends uint16_t in a packet, incrementing the index
  280. *
  281. * @param packet MDNS packet
  282. * @param index offset in the packet
  283. * @param value the value to set
  284. *
  285. * @return length of added data: 0 on error or 2 on success
  286. */
  287. static inline uint8_t _mdns_append_u16(uint8_t * packet, uint16_t * index, uint16_t value)
  288. {
  289. if ((*index + 1) >= MDNS_MAX_PACKET_SIZE) {
  290. return 0;
  291. }
  292. _mdns_append_u8(packet, index, (value >> 8) & 0xFF);
  293. _mdns_append_u8(packet, index, value & 0xFF);
  294. return 2;
  295. }
  296. /**
  297. * @brief appends uint32_t in a packet, incrementing the index
  298. *
  299. * @param packet MDNS packet
  300. * @param index offset in the packet
  301. * @param value the value to set
  302. *
  303. * @return length of added data: 0 on error or 4 on success
  304. */
  305. static inline uint8_t _mdns_append_u32(uint8_t * packet, uint16_t * index, uint32_t value)
  306. {
  307. if ((*index + 3) >= MDNS_MAX_PACKET_SIZE) {
  308. return 0;
  309. }
  310. _mdns_append_u8(packet, index, (value >> 24) & 0xFF);
  311. _mdns_append_u8(packet, index, (value >> 16) & 0xFF);
  312. _mdns_append_u8(packet, index, (value >> 8) & 0xFF);
  313. _mdns_append_u8(packet, index, value & 0xFF);
  314. return 4;
  315. }
  316. /**
  317. * @brief appends answer type, class, ttl and data length to a packet, incrementing the index
  318. *
  319. * @param packet MDNS packet
  320. * @param index offset in the packet
  321. * @param type answer type
  322. * @param ttl answer ttl
  323. *
  324. * @return length of added data: 0 on error or 10 on success
  325. */
  326. static inline uint8_t _mdns_append_type(uint8_t * packet, uint16_t * index, uint8_t type, bool flush, uint32_t ttl)
  327. {
  328. if ((*index + 10) >= MDNS_MAX_PACKET_SIZE) {
  329. return 0;
  330. }
  331. uint16_t mdns_class = MDNS_CLASS_IN;
  332. if (flush) {
  333. mdns_class = MDNS_CLASS_IN_FLUSH_CACHE;
  334. }
  335. if (type == MDNS_ANSWER_PTR) {
  336. _mdns_append_u16(packet, index, MDNS_TYPE_PTR);
  337. _mdns_append_u16(packet, index, mdns_class);
  338. } else if (type == MDNS_ANSWER_TXT) {
  339. _mdns_append_u16(packet, index, MDNS_TYPE_TXT);
  340. _mdns_append_u16(packet, index, mdns_class);
  341. } else if (type == MDNS_ANSWER_SRV) {
  342. _mdns_append_u16(packet, index, MDNS_TYPE_SRV);
  343. _mdns_append_u16(packet, index, mdns_class);
  344. } else if (type == MDNS_ANSWER_A) {
  345. _mdns_append_u16(packet, index, MDNS_TYPE_A);
  346. _mdns_append_u16(packet, index, mdns_class);
  347. } else if (type == MDNS_ANSWER_AAAA) {
  348. _mdns_append_u16(packet, index, MDNS_TYPE_AAAA);
  349. _mdns_append_u16(packet, index, mdns_class);
  350. } else {
  351. return 0;
  352. }
  353. _mdns_append_u32(packet, index, ttl);
  354. _mdns_append_u16(packet, index, 0);
  355. return 10;
  356. }
  357. /**
  358. * @brief appends single string to a packet, incrementing the index
  359. *
  360. * @param packet MDNS packet
  361. * @param index offset in the packet
  362. * @param string the string to append
  363. *
  364. * @return length of added data: 0 on error or length of the string + 1 on success
  365. */
  366. static inline uint8_t _mdns_append_string(uint8_t * packet, uint16_t * index, const char * string)
  367. {
  368. uint8_t len = strlen(string);
  369. if ((*index + len + 1) >= MDNS_MAX_PACKET_SIZE) {
  370. return 0;
  371. }
  372. _mdns_append_u8(packet, index, len);
  373. memcpy(packet + *index, string, len);
  374. *index += len;
  375. return len + 1;
  376. }
  377. /**
  378. * @brief appends FQDN to a packet, incrementing the index and
  379. * compressing the output if previous occurrence of the string (or part of it) has been found
  380. *
  381. * @param packet MDNS packet
  382. * @param index offset in the packet
  383. * @param strings string array containing the parts of the FQDN
  384. * @param count number of strings in the array
  385. *
  386. * @return length of added data: 0 on error or length on success
  387. */
  388. static uint16_t _mdns_append_fqdn(uint8_t * packet, uint16_t * index, const char * strings[], uint8_t count)
  389. {
  390. if (!count) {
  391. //empty string so terminate
  392. return _mdns_append_u8(packet, index, 0);
  393. }
  394. mdns_name_t name;
  395. static char buf[MDNS_NAME_BUF_LEN];
  396. uint8_t len = strlen(strings[0]);
  397. //try to find first the string length in the packet (if it exists)
  398. uint8_t * len_location = (uint8_t *)memchr(packet, (char)len, *index);
  399. while (len_location) {
  400. //check if the string after len_location is the string that we are looking for
  401. if (memcmp(len_location+1, strings[0], len)) { //not continuing with our string
  402. search_next:
  403. //try and find the length byte further in the packet
  404. len_location = (uint8_t *)memchr(len_location+1, (char)len, *index - (len_location+1 - packet));
  405. continue;
  406. }
  407. //seems that we might have found the string that we are looking for
  408. //read the destination into name and compare
  409. name.parts = 0;
  410. name.sub = 0;
  411. name.host[0] = 0;
  412. name.service[0] = 0;
  413. name.proto[0] = 0;
  414. name.domain[0] = 0;
  415. const uint8_t * content = _mdns_read_fqdn(packet, len_location, &name, buf);
  416. if (!content) {
  417. //not a readable fqdn?
  418. return 0;
  419. }
  420. if (name.parts == count) {
  421. uint8_t i;
  422. for (i=0; i<count; i++) {
  423. if (strcasecmp(strings[i], (const char *)&name + (i * (MDNS_NAME_BUF_LEN)))) {
  424. //not our string! let's search more
  425. goto search_next;
  426. }
  427. }
  428. //we actually have found the string
  429. break;
  430. } else {
  431. goto search_next;
  432. }
  433. }
  434. //string is not yet in the packet, so let's add it
  435. if (!len_location) {
  436. uint8_t written = _mdns_append_string(packet, index, strings[0]);
  437. if (!written) {
  438. return 0;
  439. }
  440. //run the same for the other strings in the name
  441. return written + _mdns_append_fqdn(packet, index, &strings[1], count - 1);
  442. }
  443. //we have found the string so let's insert a pointer to it instead
  444. uint16_t offset = len_location - packet;
  445. offset |= MDNS_NAME_REF;
  446. return _mdns_append_u16(packet, index, offset);
  447. }
  448. /**
  449. * @brief appends PTR record for service to a packet, incrementing the index
  450. *
  451. * @param packet MDNS packet
  452. * @param index offset in the packet
  453. * @param server the server that is hosting the service
  454. * @param service the service to add record for
  455. *
  456. * @return length of added data: 0 on error or length on success
  457. */
  458. static uint16_t _mdns_append_ptr_record(uint8_t * packet, uint16_t * index, const char * instance, const char * service, const char * proto, bool flush, bool bye)
  459. {
  460. const char * str[4];
  461. uint16_t record_length = 0;
  462. uint8_t part_length;
  463. if (service == NULL) {
  464. return 0;
  465. }
  466. str[0] = instance;
  467. str[1] = service;
  468. str[2] = proto;
  469. str[3] = MDNS_DEFAULT_DOMAIN;
  470. part_length = _mdns_append_fqdn(packet, index, str + 1, 3);
  471. if (!part_length) {
  472. return 0;
  473. }
  474. record_length += part_length;
  475. part_length = _mdns_append_type(packet, index, MDNS_ANSWER_PTR, false, bye?0:MDNS_ANSWER_PTR_TTL);
  476. if (!part_length) {
  477. return 0;
  478. }
  479. record_length += part_length;
  480. uint16_t data_len_location = *index - 2;
  481. part_length = _mdns_append_fqdn(packet, index, str, 4);
  482. if (!part_length) {
  483. return 0;
  484. }
  485. _mdns_set_u16(packet, data_len_location, part_length);
  486. record_length += part_length;
  487. return record_length;
  488. }
  489. /**
  490. * @brief appends DNS-SD PTR record for service to a packet, incrementing the index
  491. *
  492. * @param packet MDNS packet
  493. * @param index offset in the packet
  494. * @param server the server that is hosting the service
  495. * @param service the service to add record for
  496. *
  497. * @return length of added data: 0 on error or length on success
  498. */
  499. static uint16_t _mdns_append_sdptr_record(uint8_t * packet, uint16_t * index, mdns_service_t * service, bool flush, bool bye)
  500. {
  501. const char * str[3];
  502. const char * sd_str[4];
  503. uint16_t record_length = 0;
  504. uint8_t part_length;
  505. if (service == NULL) {
  506. return 0;
  507. }
  508. sd_str[0] = (char*)"_services";
  509. sd_str[1] = (char*)"_dns-sd";
  510. sd_str[2] = (char*)"_udp";
  511. sd_str[3] = MDNS_DEFAULT_DOMAIN;
  512. str[0] = service->service;
  513. str[1] = service->proto;
  514. str[2] = MDNS_DEFAULT_DOMAIN;
  515. part_length = _mdns_append_fqdn(packet, index, sd_str, 4);
  516. record_length += part_length;
  517. part_length = _mdns_append_type(packet, index, MDNS_ANSWER_PTR, flush, MDNS_ANSWER_PTR_TTL);
  518. if (!part_length) {
  519. return 0;
  520. }
  521. record_length += part_length;
  522. uint16_t data_len_location = *index - 2;
  523. part_length = _mdns_append_fqdn(packet, index, str, 3);
  524. if (!part_length) {
  525. return 0;
  526. }
  527. _mdns_set_u16(packet, data_len_location, part_length);
  528. record_length += part_length;
  529. return record_length;
  530. }
  531. /**
  532. * @brief appends TXT record for service to a packet, incrementing the index
  533. *
  534. * @param packet MDNS packet
  535. * @param index offset in the packet
  536. * @param server the server that is hosting the service
  537. * @param service the service to add record for
  538. *
  539. * @return length of added data: 0 on error or length on success
  540. */
  541. static uint16_t _mdns_append_txt_record(uint8_t * packet, uint16_t * index, mdns_service_t * service, bool flush, bool bye)
  542. {
  543. const char * str[4];
  544. uint16_t record_length = 0;
  545. uint8_t part_length;
  546. if (service == NULL) {
  547. return 0;
  548. }
  549. str[0] = _mdns_get_service_instance_name(service);
  550. str[1] = service->service;
  551. str[2] = service->proto;
  552. str[3] = MDNS_DEFAULT_DOMAIN;
  553. if (!str[0]) {
  554. return 0;
  555. }
  556. part_length = _mdns_append_fqdn(packet, index, str, 4);
  557. if (!part_length) {
  558. return 0;
  559. }
  560. record_length += part_length;
  561. part_length = _mdns_append_type(packet, index, MDNS_ANSWER_TXT, flush, bye?0:MDNS_ANSWER_TXT_TTL);
  562. if (!part_length) {
  563. return 0;
  564. }
  565. record_length += part_length;
  566. uint16_t data_len_location = *index - 2;
  567. uint16_t data_len = 0;
  568. char * tmp;
  569. mdns_txt_linked_item_t * txt = service->txt;
  570. while (txt) {
  571. tmp = (char *)malloc(2 + strlen(txt->key) + strlen(txt->value));
  572. if (tmp) {
  573. sprintf(tmp, "%s=%s", txt->key, txt->value);
  574. uint8_t l = _mdns_append_string(packet, index, tmp);
  575. free(tmp);
  576. if (!l) {
  577. return 0;
  578. }
  579. data_len += l;
  580. } else {
  581. HOOK_MALLOC_FAILED;
  582. // continue
  583. }
  584. txt = txt->next;
  585. }
  586. if (!data_len) {
  587. data_len = 1;
  588. packet[*index] = 0;
  589. *index = *index + 1;
  590. }
  591. _mdns_set_u16(packet, data_len_location, data_len);
  592. record_length += data_len;
  593. return record_length;
  594. }
  595. /**
  596. * @brief appends SRV record for service to a packet, incrementing the index
  597. *
  598. * @param packet MDNS packet
  599. * @param index offset in the packet
  600. * @param server the server that is hosting the service
  601. * @param service the service to add record for
  602. *
  603. * @return length of added data: 0 on error or length on success
  604. */
  605. static uint16_t _mdns_append_srv_record(uint8_t * packet, uint16_t * index, mdns_service_t * service, bool flush, bool bye)
  606. {
  607. const char * str[4];
  608. uint16_t record_length = 0;
  609. uint8_t part_length;
  610. if (service == NULL) {
  611. return 0;
  612. }
  613. str[0] = _mdns_get_service_instance_name(service);
  614. str[1] = service->service;
  615. str[2] = service->proto;
  616. str[3] = MDNS_DEFAULT_DOMAIN;
  617. if (!str[0]) {
  618. return 0;
  619. }
  620. part_length = _mdns_append_fqdn(packet, index, str, 4);
  621. if (!part_length) {
  622. return 0;
  623. }
  624. record_length += part_length;
  625. part_length = _mdns_append_type(packet, index, MDNS_ANSWER_SRV, flush, bye?0:MDNS_ANSWER_SRV_TTL);
  626. if (!part_length) {
  627. return 0;
  628. }
  629. record_length += part_length;
  630. uint16_t data_len_location = *index - 2;
  631. part_length = 0;
  632. part_length += _mdns_append_u16(packet, index, service->priority);
  633. part_length += _mdns_append_u16(packet, index, service->weight);
  634. part_length += _mdns_append_u16(packet, index, service->port);
  635. if (part_length != 6) {
  636. return 0;
  637. }
  638. str[0] = _mdns_server->hostname;
  639. str[1] = MDNS_DEFAULT_DOMAIN;
  640. if (_str_null_or_empty(str[0])) {
  641. return 0;
  642. }
  643. part_length = _mdns_append_fqdn(packet, index, str, 2);
  644. if (!part_length) {
  645. return 0;
  646. }
  647. _mdns_set_u16(packet, data_len_location, part_length + 6);
  648. record_length += part_length + 6;
  649. return record_length;
  650. }
  651. /**
  652. * @brief appends A record to a packet, incrementing the index
  653. *
  654. * @param packet MDNS packet
  655. * @param index offset in the packet
  656. * @param server the server
  657. * @param ip the IP address to add
  658. *
  659. * @return length of added data: 0 on error or length on success
  660. */
  661. static uint16_t _mdns_append_a_record(uint8_t * packet, uint16_t * index, uint32_t ip, bool flush, bool bye)
  662. {
  663. const char * str[2];
  664. uint16_t record_length = 0;
  665. uint8_t part_length;
  666. str[0] = _mdns_server->hostname;
  667. str[1] = MDNS_DEFAULT_DOMAIN;
  668. if (_str_null_or_empty(str[0])) {
  669. return 0;
  670. }
  671. part_length = _mdns_append_fqdn(packet, index, str, 2);
  672. if (!part_length) {
  673. return 0;
  674. }
  675. record_length += part_length;
  676. part_length = _mdns_append_type(packet, index, MDNS_ANSWER_A, flush, bye?0:MDNS_ANSWER_A_TTL);
  677. if (!part_length) {
  678. return 0;
  679. }
  680. record_length += part_length;
  681. uint16_t data_len_location = *index - 2;
  682. if ((*index + 3) >= MDNS_MAX_PACKET_SIZE) {
  683. return 0;
  684. }
  685. _mdns_append_u8(packet, index, ip & 0xFF);
  686. _mdns_append_u8(packet, index, (ip >> 8) & 0xFF);
  687. _mdns_append_u8(packet, index, (ip >> 16) & 0xFF);
  688. _mdns_append_u8(packet, index, (ip >> 24) & 0xFF);
  689. _mdns_set_u16(packet, data_len_location, 4);
  690. record_length += 4;
  691. return record_length;
  692. }
  693. /**
  694. * @brief appends AAAA record to a packet, incrementing the index
  695. *
  696. * @param packet MDNS packet
  697. * @param index offset in the packet
  698. * @param ipv6 the IPv6 address to add
  699. *
  700. * @return length of added data: 0 on error or length on success
  701. */
  702. static uint16_t _mdns_append_aaaa_record(uint8_t * packet, uint16_t * index, uint8_t * ipv6, bool flush, bool bye)
  703. {
  704. const char * str[2];
  705. uint16_t record_length = 0;
  706. uint8_t part_length;
  707. str[0] = _mdns_server->hostname;
  708. str[1] = MDNS_DEFAULT_DOMAIN;
  709. if (_str_null_or_empty(str[0])) {
  710. return 0;
  711. }
  712. part_length = _mdns_append_fqdn(packet, index, str, 2);
  713. if (!part_length) {
  714. return 0;
  715. }
  716. record_length += part_length;
  717. part_length = _mdns_append_type(packet, index, MDNS_ANSWER_AAAA, flush, bye?0:MDNS_ANSWER_AAAA_TTL);
  718. if (!part_length) {
  719. return 0;
  720. }
  721. record_length += part_length;
  722. uint16_t data_len_location = *index - 2;
  723. if ((*index + MDNS_ANSWER_AAAA_SIZE) > MDNS_MAX_PACKET_SIZE) {
  724. return 0;
  725. }
  726. part_length = MDNS_ANSWER_AAAA_SIZE;
  727. memcpy(packet + *index, ipv6, part_length);
  728. *index += part_length;
  729. _mdns_set_u16(packet, data_len_location, part_length);
  730. record_length += part_length;
  731. return record_length;
  732. }
  733. /**
  734. * @brief Append question to packet
  735. */
  736. static uint16_t _mdns_append_question(uint8_t * packet, uint16_t * index, mdns_out_question_t * q)
  737. {
  738. const char * str[4];
  739. uint8_t str_index = 0;
  740. uint8_t part_length;
  741. if (q->host) {
  742. str[str_index++] = q->host;
  743. }
  744. if (q->service) {
  745. str[str_index++] = q->service;
  746. }
  747. if (q->proto) {
  748. str[str_index++] = q->proto;
  749. }
  750. if (q->domain) {
  751. str[str_index++] = q->domain;
  752. }
  753. part_length = _mdns_append_fqdn(packet, index, str, str_index);
  754. if (!part_length) {
  755. return 0;
  756. }
  757. part_length += _mdns_append_u16(packet, index, q->type);
  758. part_length += _mdns_append_u16(packet, index, q->unicast?0x8001:0x0001);
  759. return part_length;
  760. }
  761. /**
  762. * @brief Helper to get either ETH or STA if the other is provided
  763. * Used when two interfaces are on the same subnet
  764. */
  765. static mdns_if_t _mdns_get_other_if (mdns_if_t tcpip_if)
  766. {
  767. if (tcpip_if == MDNS_IF_STA) {
  768. return MDNS_IF_ETH;
  769. } else if (tcpip_if == MDNS_IF_ETH) {
  770. return MDNS_IF_STA;
  771. }
  772. return MDNS_IF_MAX;
  773. }
  774. /**
  775. * @brief Check if interface is duplicate (two interfaces on the same subnet)
  776. */
  777. static bool _mdns_if_is_dup(mdns_if_t tcpip_if)
  778. {
  779. mdns_if_t other_if = _mdns_get_other_if (tcpip_if);
  780. if (other_if == MDNS_IF_MAX) {
  781. return false;
  782. }
  783. if (_mdns_server->interfaces[tcpip_if].pcbs[MDNS_IP_PROTOCOL_V4].state == PCB_DUP
  784. || _mdns_server->interfaces[tcpip_if].pcbs[MDNS_IP_PROTOCOL_V6].state == PCB_DUP
  785. || _mdns_server->interfaces[other_if].pcbs[MDNS_IP_PROTOCOL_V4].state == PCB_DUP
  786. || _mdns_server->interfaces[other_if].pcbs[MDNS_IP_PROTOCOL_V6].state == PCB_DUP
  787. ) {
  788. return true;
  789. }
  790. return false;
  791. }
  792. /**
  793. * @brief Check if IPv6 address is NULL
  794. */
  795. static bool _ipv6_address_is_zero(esp_ip6_addr_t ip6)
  796. {
  797. uint8_t i;
  798. uint8_t * data = (uint8_t *)ip6.addr;
  799. for (i=0; i<_MDNS_SIZEOF_IP6_ADDR; i++) {
  800. if (data[i]) {
  801. return false;
  802. }
  803. }
  804. return true;
  805. }
  806. /**
  807. * @brief Append answer to packet
  808. *
  809. * @return number of answers added to the packet
  810. */
  811. static uint8_t _mdns_append_answer(uint8_t * packet, uint16_t * index, mdns_out_answer_t * answer, mdns_if_t tcpip_if)
  812. {
  813. if (answer->type == MDNS_TYPE_PTR) {
  814. if (answer->service) {
  815. return _mdns_append_ptr_record(packet, index,
  816. _mdns_get_service_instance_name(answer->service),
  817. answer->service->service, answer->service->proto,
  818. answer->flush, answer->bye) > 0;
  819. } else {
  820. return _mdns_append_ptr_record(packet, index,
  821. answer->custom_instance, answer->custom_service, answer->custom_proto,
  822. answer->flush, answer->bye) > 0;
  823. }
  824. } else if (answer->type == MDNS_TYPE_SRV) {
  825. return _mdns_append_srv_record(packet, index, answer->service, answer->flush, answer->bye) > 0;
  826. } else if (answer->type == MDNS_TYPE_TXT) {
  827. return _mdns_append_txt_record(packet, index, answer->service, answer->flush, answer->bye) > 0;
  828. } else if (answer->type == MDNS_TYPE_SDPTR) {
  829. return _mdns_append_sdptr_record(packet, index, answer->service, answer->flush, answer->bye) > 0;
  830. } else if (answer->type == MDNS_TYPE_A) {
  831. esp_netif_ip_info_t if_ip_info;
  832. if (!_mdns_server->interfaces[tcpip_if].pcbs[MDNS_IP_PROTOCOL_V4].pcb && _mdns_server->interfaces[tcpip_if].pcbs[MDNS_IP_PROTOCOL_V4].state != PCB_DUP) {
  833. return 0;
  834. }
  835. if (esp_netif_get_ip_info(_mdns_get_esp_netif(tcpip_if), &if_ip_info)) {
  836. return 0;
  837. }
  838. if (_mdns_append_a_record(packet, index, if_ip_info.ip.addr, answer->flush, answer->bye) <= 0) {
  839. return 0;
  840. }
  841. if (!_mdns_if_is_dup(tcpip_if)) {
  842. return 1;
  843. }
  844. mdns_if_t other_if = _mdns_get_other_if (tcpip_if);
  845. if (esp_netif_get_ip_info(_mdns_get_esp_netif(other_if), &if_ip_info)) {
  846. return 1;
  847. }
  848. if (_mdns_append_a_record(packet, index, if_ip_info.ip.addr, answer->flush, answer->bye) > 0) {
  849. return 2;
  850. }
  851. return 1;
  852. } else if (answer->type == MDNS_TYPE_AAAA) {
  853. struct esp_ip6_addr if_ip6;
  854. if (!_mdns_server->interfaces[tcpip_if].pcbs[MDNS_IP_PROTOCOL_V6].pcb && _mdns_server->interfaces[tcpip_if].pcbs[MDNS_IP_PROTOCOL_V6].state != PCB_DUP) {
  855. return 0;
  856. }
  857. if (esp_netif_get_ip6_linklocal(_mdns_get_esp_netif(tcpip_if), &if_ip6)) {
  858. return 0;
  859. }
  860. if (_ipv6_address_is_zero(if_ip6)) {
  861. return 0;
  862. }
  863. if (_mdns_append_aaaa_record(packet, index, (uint8_t*)if_ip6.addr, answer->flush, answer->bye) <= 0) {
  864. return 0;
  865. }
  866. if (!_mdns_if_is_dup(tcpip_if)) {
  867. return 1;
  868. }
  869. mdns_if_t other_if = _mdns_get_other_if (tcpip_if);
  870. if (esp_netif_get_ip6_linklocal(_mdns_get_esp_netif(other_if), &if_ip6)) {
  871. return 1;
  872. }
  873. if (_mdns_append_aaaa_record(packet, index, (uint8_t*)if_ip6.addr, answer->flush, answer->bye) > 0) {
  874. return 2;
  875. }
  876. return 1;
  877. }
  878. return 0;
  879. }
  880. /**
  881. * @brief sends a packet
  882. *
  883. * @param p the packet
  884. */
  885. static void _mdns_dispatch_tx_packet(mdns_tx_packet_t * p)
  886. {
  887. static uint8_t packet[MDNS_MAX_PACKET_SIZE];
  888. uint16_t index = MDNS_HEAD_LEN;
  889. memset(packet, 0, MDNS_HEAD_LEN);
  890. mdns_out_question_t * q;
  891. mdns_out_answer_t * a;
  892. uint8_t count;
  893. _mdns_set_u16(packet, MDNS_HEAD_FLAGS_OFFSET, p->flags);
  894. _mdns_set_u16(packet, MDNS_HEAD_ID_OFFSET, p->id);
  895. count = 0;
  896. q = p->questions;
  897. while (q) {
  898. if (_mdns_append_question(packet, &index, q)) {
  899. count++;
  900. }
  901. q = q->next;
  902. }
  903. _mdns_set_u16(packet, MDNS_HEAD_QUESTIONS_OFFSET, count);
  904. count = 0;
  905. a = p->answers;
  906. while (a) {
  907. count += _mdns_append_answer(packet, &index, a, p->tcpip_if);
  908. a = a->next;
  909. }
  910. _mdns_set_u16(packet, MDNS_HEAD_ANSWERS_OFFSET, count);
  911. count = 0;
  912. a = p->servers;
  913. while (a) {
  914. count += _mdns_append_answer(packet, &index, a, p->tcpip_if);
  915. a = a->next;
  916. }
  917. _mdns_set_u16(packet, MDNS_HEAD_SERVERS_OFFSET, count);
  918. count = 0;
  919. a = p->additional;
  920. while (a) {
  921. count += _mdns_append_answer(packet, &index, a, p->tcpip_if);
  922. a = a->next;
  923. }
  924. _mdns_set_u16(packet, MDNS_HEAD_ADDITIONAL_OFFSET, count);
  925. #ifdef MDNS_ENABLE_DEBUG
  926. _mdns_dbg_printf("\nTX[%u][%u]: ", p->tcpip_if, p->ip_protocol);
  927. if (p->dst.type == IPADDR_TYPE_V4) {
  928. _mdns_dbg_printf("To: " IPSTR ":%u, ", IP2STR(&p->dst.u_addr.ip4), p->port);
  929. } else {
  930. _mdns_dbg_printf("To: " IPV6STR ":%u, ", IPV62STR(p->dst.u_addr.ip6), p->port);
  931. }
  932. mdns_debug_packet(packet, index);
  933. #endif
  934. _mdns_udp_pcb_write(p->tcpip_if, p->ip_protocol, &p->dst, p->port, packet, index);
  935. }
  936. /**
  937. * @brief frees a packet
  938. *
  939. * @param packet the packet
  940. */
  941. static void _mdns_free_tx_packet(mdns_tx_packet_t * packet)
  942. {
  943. if (!packet) {
  944. return;
  945. }
  946. queueFree(mdns_out_question_t, packet->questions);
  947. queueFree(mdns_out_answer_t, packet->answers);
  948. queueFree(mdns_out_answer_t, packet->servers);
  949. queueFree(mdns_out_answer_t, packet->additional);
  950. free(packet);
  951. }
  952. /**
  953. * @brief schedules a packet to be sent after given milliseconds
  954. *
  955. * @param packet the packet
  956. * @param ms_after number of milliseconds after which the packet should be dispatched
  957. */
  958. static void _mdns_schedule_tx_packet(mdns_tx_packet_t * packet, uint32_t ms_after)
  959. {
  960. if (!packet) {
  961. return;
  962. }
  963. packet->send_at = (xTaskGetTickCount() * portTICK_PERIOD_MS) + ms_after;
  964. packet->next = NULL;
  965. if (!_mdns_server->tx_queue_head || _mdns_server->tx_queue_head->send_at > packet->send_at) {
  966. packet->next = _mdns_server->tx_queue_head;
  967. _mdns_server->tx_queue_head = packet;
  968. return;
  969. }
  970. mdns_tx_packet_t * q = _mdns_server->tx_queue_head;
  971. while (q->next && q->next->send_at <= packet->send_at) {
  972. q = q->next;
  973. }
  974. packet->next = q->next;
  975. q->next = packet;
  976. }
  977. /**
  978. * @brief free all packets scheduled for sending
  979. */
  980. static void _mdns_clear_tx_queue_head(void)
  981. {
  982. mdns_tx_packet_t * q;
  983. while (_mdns_server->tx_queue_head) {
  984. q = _mdns_server->tx_queue_head;
  985. _mdns_server->tx_queue_head = _mdns_server->tx_queue_head->next;
  986. _mdns_free_tx_packet(q);
  987. }
  988. }
  989. /**
  990. * @brief clear packets scheduled for sending on a specific interface
  991. *
  992. * @param tcpip_if the interface
  993. * @param ip_protocol pcb type V4/V6
  994. */
  995. static void _mdns_clear_pcb_tx_queue_head(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  996. {
  997. mdns_tx_packet_t * q, * p;
  998. while (_mdns_server->tx_queue_head && _mdns_server->tx_queue_head->tcpip_if == tcpip_if && _mdns_server->tx_queue_head->ip_protocol == ip_protocol) {
  999. q = _mdns_server->tx_queue_head;
  1000. _mdns_server->tx_queue_head = _mdns_server->tx_queue_head->next;
  1001. _mdns_free_tx_packet(q);
  1002. }
  1003. if (_mdns_server->tx_queue_head) {
  1004. q = _mdns_server->tx_queue_head;
  1005. while (q->next) {
  1006. if (q->next->tcpip_if == tcpip_if && q->next->ip_protocol == ip_protocol) {
  1007. p = q->next;
  1008. q->next = p->next;
  1009. _mdns_free_tx_packet(p);
  1010. } else {
  1011. q = q->next;
  1012. }
  1013. }
  1014. }
  1015. }
  1016. /**
  1017. * @brief get the next packet scheduled for sending on a specific interface
  1018. *
  1019. * @param tcpip_if the interface
  1020. * @param ip_protocol pcb type V4/V6
  1021. */
  1022. static mdns_tx_packet_t * _mdns_get_next_pcb_packet(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  1023. {
  1024. mdns_tx_packet_t * q = _mdns_server->tx_queue_head;
  1025. while (q) {
  1026. if (q->tcpip_if == tcpip_if && q->ip_protocol == ip_protocol) {
  1027. return q;
  1028. }
  1029. q = q->next;
  1030. }
  1031. return NULL;
  1032. }
  1033. /**
  1034. * @brief Find, remove and free answer from the scheduled packets
  1035. */
  1036. static void _mdns_remove_scheduled_answer(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol, uint16_t type, mdns_srv_item_t * service)
  1037. {
  1038. mdns_srv_item_t s = {NULL, NULL};
  1039. if (!service) {
  1040. service = &s;
  1041. }
  1042. mdns_tx_packet_t * q = _mdns_server->tx_queue_head;
  1043. while (q) {
  1044. if (q->tcpip_if == tcpip_if && q->ip_protocol == ip_protocol && q->distributed) {
  1045. mdns_out_answer_t * a = q->answers;
  1046. if (a->type == type && a->service == service->service) {
  1047. q->answers = q->answers->next;
  1048. free(a);
  1049. } else {
  1050. while (a->next) {
  1051. if (a->next->type == type && a->next->service == service->service) {
  1052. mdns_out_answer_t * b = a->next;
  1053. a->next = b->next;
  1054. free(b);
  1055. break;
  1056. }
  1057. a = a->next;
  1058. }
  1059. }
  1060. }
  1061. q = q->next;
  1062. }
  1063. }
  1064. /**
  1065. * @brief Remove and free answer from answer list (destination)
  1066. */
  1067. static void _mdns_dealloc_answer(mdns_out_answer_t ** destination, uint16_t type, mdns_srv_item_t * service)
  1068. {
  1069. mdns_out_answer_t * d = *destination;
  1070. if (!d) {
  1071. return;
  1072. }
  1073. mdns_srv_item_t s = {NULL, NULL};
  1074. if (!service) {
  1075. service = &s;
  1076. }
  1077. if (d->type == type && d->service == service->service) {
  1078. *destination = d->next;
  1079. free(d);
  1080. return;
  1081. }
  1082. while (d->next) {
  1083. mdns_out_answer_t * a = d->next;
  1084. if (a->type == type && a->service == service->service) {
  1085. d->next = a->next;
  1086. free(a);
  1087. return;
  1088. }
  1089. d = d->next;
  1090. }
  1091. }
  1092. /**
  1093. * @brief Allocate new answer and add it to answer list (destination)
  1094. */
  1095. static bool _mdns_alloc_answer(mdns_out_answer_t ** destination, uint16_t type, mdns_service_t * service, bool flush, bool bye)
  1096. {
  1097. mdns_out_answer_t * d = *destination;
  1098. while (d) {
  1099. if (d->type == type && d->service == service) {
  1100. return true;
  1101. }
  1102. d = d->next;
  1103. }
  1104. mdns_out_answer_t * a = (mdns_out_answer_t *)malloc(sizeof(mdns_out_answer_t));
  1105. if (!a) {
  1106. HOOK_MALLOC_FAILED;
  1107. return false;
  1108. }
  1109. a->type = type;
  1110. a->service = service;
  1111. a->custom_service = NULL;
  1112. a->bye = bye;
  1113. a->flush = flush;
  1114. a->next = NULL;
  1115. queueToEnd(mdns_out_answer_t, *destination, a);
  1116. return true;
  1117. }
  1118. /**
  1119. * @brief Allocate new packet for sending
  1120. */
  1121. static mdns_tx_packet_t * _mdns_alloc_packet_default(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  1122. {
  1123. mdns_tx_packet_t * packet = (mdns_tx_packet_t*)malloc(sizeof(mdns_tx_packet_t));
  1124. if (!packet) {
  1125. HOOK_MALLOC_FAILED;
  1126. return NULL;
  1127. }
  1128. memset((uint8_t*)packet, 0, sizeof(mdns_tx_packet_t));
  1129. packet->tcpip_if = tcpip_if;
  1130. packet->ip_protocol = ip_protocol;
  1131. packet->port = MDNS_SERVICE_PORT;
  1132. if (ip_protocol == MDNS_IP_PROTOCOL_V4) {
  1133. IP_ADDR4(&packet->dst, 224, 0, 0, 251);
  1134. } else {
  1135. esp_ip_addr_t addr = IPADDR6_INIT(0x000002ff, 0, 0, 0xfb000000);
  1136. memcpy(&packet->dst, &addr, sizeof(esp_ip_addr_t));
  1137. }
  1138. return packet;
  1139. }
  1140. /**
  1141. * @brief Create answer packet to questions from parsed packet
  1142. */
  1143. static void _mdns_create_answer_from_parsed_packet(mdns_parsed_packet_t * parsed_packet)
  1144. {
  1145. if (!parsed_packet->questions) {
  1146. return;
  1147. }
  1148. bool send_flush = parsed_packet->src_port == MDNS_SERVICE_PORT;
  1149. bool unicast = false;
  1150. bool shared = false;
  1151. mdns_tx_packet_t * packet = _mdns_alloc_packet_default(parsed_packet->tcpip_if, parsed_packet->ip_protocol);
  1152. if (!packet) {
  1153. return;
  1154. }
  1155. packet->flags = MDNS_FLAGS_AUTHORITATIVE;
  1156. packet->distributed = parsed_packet->distributed;
  1157. packet->id = parsed_packet->id;
  1158. mdns_parsed_question_t * q = parsed_packet->questions;
  1159. while (q) {
  1160. mdns_srv_item_t * service = NULL;
  1161. if (q->service && q->proto) {
  1162. service = _mdns_get_service_item(q->service, q->proto);
  1163. if (!service) {
  1164. continue;
  1165. }
  1166. }
  1167. if (q->unicast) {
  1168. unicast = true;
  1169. }
  1170. if (service) {
  1171. if (q->type == MDNS_TYPE_PTR || q->type == MDNS_TYPE_ANY) {
  1172. if (q->type == MDNS_TYPE_PTR || !parsed_packet->probe) {
  1173. shared = true;
  1174. }
  1175. if (!_mdns_alloc_answer(&packet->answers, MDNS_TYPE_PTR, service->service, false, false)
  1176. || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_SRV, service->service, send_flush, false)
  1177. || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_TXT, service->service, send_flush, false)
  1178. || !_mdns_alloc_answer(shared?&packet->additional:&packet->answers, MDNS_TYPE_A, NULL, send_flush, false)
  1179. || !_mdns_alloc_answer(shared?&packet->additional:&packet->answers, MDNS_TYPE_AAAA, NULL, send_flush, false)) {
  1180. _mdns_free_tx_packet(packet);
  1181. return;
  1182. }
  1183. } else if (q->type == MDNS_TYPE_SRV) {
  1184. if (!_mdns_alloc_answer(&packet->answers, MDNS_TYPE_SRV, service->service, send_flush, false)
  1185. || !_mdns_alloc_answer(&packet->additional, MDNS_TYPE_A, NULL, send_flush, false)
  1186. || !_mdns_alloc_answer(&packet->additional, MDNS_TYPE_AAAA, NULL, send_flush, false)) {
  1187. _mdns_free_tx_packet(packet);
  1188. return;
  1189. }
  1190. } else if (q->type == MDNS_TYPE_TXT) {
  1191. if (!_mdns_alloc_answer(&packet->answers, MDNS_TYPE_TXT, service->service, send_flush, false)) {
  1192. _mdns_free_tx_packet(packet);
  1193. return;
  1194. }
  1195. } else if (q->type == MDNS_TYPE_SDPTR) {
  1196. shared = true;
  1197. if (!_mdns_alloc_answer(&packet->answers, MDNS_TYPE_SDPTR, service->service, false, false)) {
  1198. _mdns_free_tx_packet(packet);
  1199. return;
  1200. }
  1201. }
  1202. } else {
  1203. if (q->type == MDNS_TYPE_ANY || q->type == MDNS_TYPE_A || q->type == MDNS_TYPE_AAAA) {
  1204. if (!_mdns_alloc_answer(&packet->answers, MDNS_TYPE_A, NULL, send_flush, false)
  1205. || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_AAAA, NULL, send_flush, false)) {
  1206. _mdns_free_tx_packet(packet);
  1207. return;
  1208. }
  1209. #ifdef MDNS_REPEAT_QUERY_IN_RESPONSE
  1210. if (parsed_packet->src_port != MDNS_SERVICE_PORT) {
  1211. mdns_out_question_t * out_question = malloc(sizeof(mdns_out_question_t));
  1212. if (out_question == NULL) {
  1213. HOOK_MALLOC_FAILED;
  1214. _mdns_free_tx_packet(packet);
  1215. return;
  1216. }
  1217. memcpy(out_question, q, sizeof(mdns_out_question_t));
  1218. out_question->next = NULL;
  1219. queueToEnd(mdns_out_question_t, packet->questions, out_question);
  1220. }
  1221. #endif // MDNS_REPEAT_QUERY_IN_RESPONSE
  1222. } else if (!_mdns_alloc_answer(&packet->answers, q->type, NULL, send_flush, false)) {
  1223. _mdns_free_tx_packet(packet);
  1224. return;
  1225. }
  1226. }
  1227. q = q->next;
  1228. }
  1229. if (unicast || !send_flush) {
  1230. memcpy(&packet->dst, &parsed_packet->src, sizeof(esp_ip_addr_t));
  1231. packet->port = parsed_packet->src_port;
  1232. }
  1233. static uint8_t share_step = 0;
  1234. if (shared) {
  1235. _mdns_schedule_tx_packet(packet, 25 + (share_step * 25));
  1236. share_step = (share_step + 1) & 0x03;
  1237. } else {
  1238. _mdns_dispatch_tx_packet(packet);
  1239. _mdns_free_tx_packet(packet);
  1240. }
  1241. }
  1242. /**
  1243. * @brief Check if question is already in the list
  1244. */
  1245. static bool _mdns_question_exists(mdns_out_question_t * needle, mdns_out_question_t * haystack)
  1246. {
  1247. while (haystack) {
  1248. if (haystack->type == needle->type
  1249. && haystack->host == needle->host
  1250. && haystack->service == needle->service
  1251. && haystack->proto == needle->proto) {
  1252. return true;
  1253. }
  1254. haystack = haystack->next;
  1255. }
  1256. return false;
  1257. }
  1258. /**
  1259. * @brief Create probe packet for particular services on particular PCB
  1260. */
  1261. static mdns_tx_packet_t * _mdns_create_probe_packet(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol, mdns_srv_item_t * services[], size_t len, bool first, bool include_ip)
  1262. {
  1263. mdns_tx_packet_t * packet = _mdns_alloc_packet_default(tcpip_if, ip_protocol);
  1264. if (!packet) {
  1265. return NULL;
  1266. }
  1267. size_t i;
  1268. for (i=0; i<len; i++) {
  1269. mdns_out_question_t * q = (mdns_out_question_t *)malloc(sizeof(mdns_out_question_t));
  1270. if (!q) {
  1271. HOOK_MALLOC_FAILED;
  1272. _mdns_free_tx_packet(packet);
  1273. return NULL;
  1274. }
  1275. q->next = NULL;
  1276. q->unicast = first;
  1277. q->type = MDNS_TYPE_ANY;
  1278. q->host = _mdns_get_service_instance_name(services[i]->service);
  1279. q->service = services[i]->service->service;
  1280. q->proto = services[i]->service->proto;
  1281. q->domain = MDNS_DEFAULT_DOMAIN;
  1282. if (!q->host || _mdns_question_exists(q, packet->questions)) {
  1283. free(q);
  1284. continue;
  1285. } else {
  1286. queueToEnd(mdns_out_question_t, packet->questions, q);
  1287. }
  1288. if (!q->host || !_mdns_alloc_answer(&packet->servers, MDNS_TYPE_SRV, services[i]->service, false, false)) {
  1289. _mdns_free_tx_packet(packet);
  1290. return NULL;
  1291. }
  1292. }
  1293. if (include_ip && !_str_null_or_empty(_mdns_server->hostname)) {
  1294. mdns_out_question_t * q = (mdns_out_question_t *)malloc(sizeof(mdns_out_question_t));
  1295. if (!q) {
  1296. HOOK_MALLOC_FAILED;
  1297. _mdns_free_tx_packet(packet);
  1298. return NULL;
  1299. }
  1300. q->next = NULL;
  1301. q->unicast = first;
  1302. q->type = MDNS_TYPE_ANY;
  1303. q->host = _mdns_server->hostname;
  1304. q->service = NULL;
  1305. q->proto = NULL;
  1306. q->domain = MDNS_DEFAULT_DOMAIN;
  1307. if (_mdns_question_exists(q, packet->questions)) {
  1308. free(q);
  1309. } else {
  1310. queueToEnd(mdns_out_question_t, packet->questions, q);
  1311. }
  1312. if (_mdns_server->interfaces[tcpip_if].pcbs[MDNS_IP_PROTOCOL_V4].pcb) {
  1313. if (!_mdns_alloc_answer(&packet->servers, MDNS_TYPE_A, NULL, false, false)) {
  1314. _mdns_free_tx_packet(packet);
  1315. return NULL;
  1316. }
  1317. }
  1318. if (_mdns_server->interfaces[tcpip_if].pcbs[MDNS_IP_PROTOCOL_V6].pcb) {
  1319. if (!_mdns_alloc_answer(&packet->servers, MDNS_TYPE_AAAA, NULL, false, false)) {
  1320. _mdns_free_tx_packet(packet);
  1321. return NULL;
  1322. }
  1323. }
  1324. }
  1325. return packet;
  1326. }
  1327. /**
  1328. * @brief Create announce packet for particular services on particular PCB
  1329. */
  1330. static mdns_tx_packet_t * _mdns_create_announce_packet(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol, mdns_srv_item_t * services[], size_t len, bool include_ip)
  1331. {
  1332. mdns_tx_packet_t * packet = _mdns_alloc_packet_default(tcpip_if, ip_protocol);
  1333. if (!packet) {
  1334. return NULL;
  1335. }
  1336. packet->flags = MDNS_FLAGS_AUTHORITATIVE;
  1337. uint8_t i;
  1338. for (i=0; i<len; i++) {
  1339. if (!_mdns_alloc_answer(&packet->answers, MDNS_TYPE_SDPTR, services[i]->service, false, false)
  1340. || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_PTR, services[i]->service, false, false)
  1341. || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_SRV, services[i]->service, true, false)
  1342. || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_TXT, services[i]->service, true, false)) {
  1343. _mdns_free_tx_packet(packet);
  1344. return NULL;
  1345. }
  1346. }
  1347. if (include_ip) {
  1348. if (!_mdns_alloc_answer(&packet->answers, MDNS_TYPE_A, NULL, true, false)
  1349. || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_AAAA, NULL, true, false)) {
  1350. _mdns_free_tx_packet(packet);
  1351. return NULL;
  1352. }
  1353. }
  1354. return packet;
  1355. }
  1356. /**
  1357. * @brief Convert probe packet to announce
  1358. */
  1359. static mdns_tx_packet_t * _mdns_create_announce_from_probe(mdns_tx_packet_t * probe)
  1360. {
  1361. mdns_tx_packet_t * packet = _mdns_alloc_packet_default(probe->tcpip_if, probe->ip_protocol);
  1362. if (!packet) {
  1363. return NULL;
  1364. }
  1365. packet->flags = MDNS_FLAGS_AUTHORITATIVE;
  1366. mdns_out_answer_t * s = probe->servers;
  1367. while (s) {
  1368. if (s->type == MDNS_TYPE_SRV) {
  1369. if (!_mdns_alloc_answer(&packet->answers, MDNS_TYPE_SDPTR, s->service, false, false)
  1370. || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_PTR, s->service, false, false)
  1371. || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_SRV, s->service, true, false)
  1372. || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_TXT, s->service, true, false)) {
  1373. _mdns_free_tx_packet(packet);
  1374. return NULL;
  1375. }
  1376. } else if (s->type == MDNS_TYPE_A || s->type == MDNS_TYPE_AAAA) {
  1377. if (!_mdns_alloc_answer(&packet->answers, s->type, NULL, true, false)) {
  1378. _mdns_free_tx_packet(packet);
  1379. return NULL;
  1380. }
  1381. }
  1382. s = s->next;
  1383. }
  1384. return packet;
  1385. }
  1386. /**
  1387. * @brief Send by for particular services on particular PCB
  1388. */
  1389. static void _mdns_pcb_send_bye(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol, mdns_srv_item_t ** services, size_t len, bool include_ip)
  1390. {
  1391. mdns_tx_packet_t * packet = _mdns_alloc_packet_default(tcpip_if, ip_protocol);
  1392. if (!packet) {
  1393. return;
  1394. }
  1395. packet->flags = MDNS_FLAGS_AUTHORITATIVE;
  1396. size_t i;
  1397. for (i=0; i<len; i++) {
  1398. if (!_mdns_alloc_answer(&packet->answers, MDNS_TYPE_PTR, services[i]->service, true, true)) {
  1399. _mdns_free_tx_packet(packet);
  1400. return;
  1401. }
  1402. }
  1403. if (include_ip && (!_mdns_alloc_answer(&packet->answers, MDNS_TYPE_A, NULL, true, true) || !_mdns_alloc_answer(&packet->answers, MDNS_TYPE_AAAA, NULL, true, true))) {
  1404. _mdns_free_tx_packet(packet);
  1405. return;
  1406. }
  1407. _mdns_dispatch_tx_packet(packet);
  1408. _mdns_free_tx_packet(packet);
  1409. }
  1410. /**
  1411. * @brief Send probe for additional services on particular PCB
  1412. */
  1413. static void _mdns_init_pcb_probe_new_service(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol, mdns_srv_item_t ** services, size_t len, bool probe_ip)
  1414. {
  1415. mdns_pcb_t * pcb = &_mdns_server->interfaces[tcpip_if].pcbs[ip_protocol];
  1416. size_t services_final_len = len;
  1417. if (PCB_STATE_IS_PROBING(pcb)) {
  1418. services_final_len += pcb->probe_services_len;
  1419. }
  1420. mdns_srv_item_t ** _services = NULL;
  1421. if (services_final_len) {
  1422. _services = (mdns_srv_item_t **)malloc(sizeof(mdns_srv_item_t *) * services_final_len);
  1423. if (!_services) {
  1424. HOOK_MALLOC_FAILED;
  1425. return;
  1426. }
  1427. size_t i;
  1428. for (i=0; i<len; i++) {
  1429. _services[i] = services[i];
  1430. }
  1431. if (pcb->probe_services) {
  1432. for (i=0; i<pcb->probe_services_len; i++) {
  1433. _services[len+i] = pcb->probe_services[i];
  1434. }
  1435. free(pcb->probe_services);
  1436. }
  1437. }
  1438. probe_ip = pcb->probe_ip || probe_ip;
  1439. pcb->probe_ip = false;
  1440. pcb->probe_services = NULL;
  1441. pcb->probe_services_len = 0;
  1442. pcb->probe_running = false;
  1443. mdns_tx_packet_t * packet = _mdns_create_probe_packet(tcpip_if, ip_protocol, _services, services_final_len, true, probe_ip);
  1444. if (!packet) {
  1445. free(_services);
  1446. return;
  1447. }
  1448. pcb->probe_ip = probe_ip;
  1449. pcb->probe_services = _services;
  1450. pcb->probe_services_len = services_final_len;
  1451. pcb->probe_running = true;
  1452. _mdns_schedule_tx_packet(packet, ((pcb->failed_probes > 5)?1000:120) + (esp_random() & 0x7F));
  1453. pcb->state = PCB_PROBE_1;
  1454. }
  1455. /**
  1456. * @brief Send probe for particular services on particular PCB
  1457. *
  1458. * Tests possible duplication on probing service structure and probes only for new entries.
  1459. * - If pcb probing then add only non-probing services and restarts probing
  1460. * - If pcb not probing, run probing for all specified services
  1461. */
  1462. static void _mdns_init_pcb_probe(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol, mdns_srv_item_t ** services, size_t len, bool probe_ip)
  1463. {
  1464. mdns_pcb_t * pcb = &_mdns_server->interfaces[tcpip_if].pcbs[ip_protocol];
  1465. _mdns_clear_pcb_tx_queue_head(tcpip_if, ip_protocol);
  1466. if (_str_null_or_empty(_mdns_server->hostname)) {
  1467. pcb->state = PCB_RUNNING;
  1468. return;
  1469. }
  1470. if (PCB_STATE_IS_PROBING(pcb)) {
  1471. // Looking for already probing services to resolve duplications
  1472. mdns_srv_item_t * new_probe_services[len];
  1473. int new_probe_service_len = 0;
  1474. bool found;
  1475. for (int j=0; j < len; ++j) {
  1476. found = false;
  1477. for (int i=0; i < pcb->probe_services_len; ++i) {
  1478. if (pcb->probe_services[i] == services[j]) {
  1479. found = true;
  1480. break;
  1481. }
  1482. }
  1483. if (!found) {
  1484. new_probe_services[new_probe_service_len++] = services[j];
  1485. }
  1486. }
  1487. // init probing for newly added services
  1488. _mdns_init_pcb_probe_new_service(tcpip_if, ip_protocol,
  1489. new_probe_service_len?new_probe_services:NULL, new_probe_service_len, probe_ip);
  1490. } else {
  1491. // not probing, so init for all services
  1492. _mdns_init_pcb_probe_new_service(tcpip_if, ip_protocol, services, len, probe_ip);
  1493. }
  1494. }
  1495. /**
  1496. * @brief Restart the responder on particular PCB
  1497. */
  1498. static void _mdns_restart_pcb(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  1499. {
  1500. size_t srv_count = 0;
  1501. mdns_srv_item_t * a = _mdns_server->services;
  1502. while (a) {
  1503. srv_count++;
  1504. a = a->next;
  1505. }
  1506. mdns_srv_item_t * services[srv_count];
  1507. size_t i = 0;
  1508. a = _mdns_server->services;
  1509. while (a) {
  1510. services[i++] = a;
  1511. a = a->next;
  1512. }
  1513. _mdns_init_pcb_probe(tcpip_if, ip_protocol, services, srv_count, true);
  1514. }
  1515. /**
  1516. * @brief Send by for particular services
  1517. */
  1518. static void _mdns_send_bye(mdns_srv_item_t ** services, size_t len, bool include_ip)
  1519. {
  1520. uint8_t i, j;
  1521. if (_str_null_or_empty(_mdns_server->hostname)) {
  1522. return;
  1523. }
  1524. for (i=0; i<MDNS_IF_MAX; i++) {
  1525. for (j=0; j<MDNS_IP_PROTOCOL_MAX; j++) {
  1526. if (_mdns_server->interfaces[i].pcbs[j].pcb && _mdns_server->interfaces[i].pcbs[j].state == PCB_RUNNING) {
  1527. _mdns_pcb_send_bye((mdns_if_t)i, (mdns_ip_protocol_t)j, services, len, include_ip);
  1528. }
  1529. }
  1530. }
  1531. }
  1532. /**
  1533. * @brief Send announcement on particular PCB
  1534. */
  1535. static void _mdns_announce_pcb(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol, mdns_srv_item_t ** services, size_t len, bool include_ip)
  1536. {
  1537. mdns_pcb_t * _pcb = &_mdns_server->interfaces[tcpip_if].pcbs[ip_protocol];
  1538. size_t i;
  1539. if (_pcb->pcb) {
  1540. if (PCB_STATE_IS_PROBING(_pcb)) {
  1541. _mdns_init_pcb_probe(tcpip_if, ip_protocol, services, len, include_ip);
  1542. } else if (PCB_STATE_IS_ANNOUNCING(_pcb)) {
  1543. mdns_tx_packet_t * p = _mdns_get_next_pcb_packet(tcpip_if, ip_protocol);
  1544. if (p) {
  1545. for (i=0; i<len; i++) {
  1546. if (!_mdns_alloc_answer(&p->answers, MDNS_TYPE_SDPTR, services[i]->service, false, false)
  1547. || !_mdns_alloc_answer(&p->answers, MDNS_TYPE_PTR, services[i]->service, false, false)
  1548. || !_mdns_alloc_answer(&p->answers, MDNS_TYPE_SRV, services[i]->service, true, false)
  1549. || !_mdns_alloc_answer(&p->answers, MDNS_TYPE_TXT, services[i]->service, true, false)) {
  1550. break;
  1551. }
  1552. }
  1553. if (include_ip) {
  1554. _mdns_dealloc_answer(&p->additional, MDNS_TYPE_A, NULL);
  1555. _mdns_dealloc_answer(&p->additional, MDNS_TYPE_AAAA, NULL);
  1556. _mdns_alloc_answer(&p->answers, MDNS_TYPE_A, NULL, true, false);
  1557. _mdns_alloc_answer(&p->answers, MDNS_TYPE_AAAA, NULL, true, false);
  1558. }
  1559. _pcb->state = PCB_ANNOUNCE_1;
  1560. }
  1561. } else if (_pcb->state == PCB_RUNNING) {
  1562. if (_str_null_or_empty(_mdns_server->hostname)) {
  1563. return;
  1564. }
  1565. _pcb->state = PCB_ANNOUNCE_1;
  1566. mdns_tx_packet_t * p = _mdns_create_announce_packet(tcpip_if, ip_protocol, services, len, include_ip);
  1567. if (p) {
  1568. _mdns_schedule_tx_packet(p, 0);
  1569. }
  1570. }
  1571. }
  1572. }
  1573. /**
  1574. * @brief Send probe on all active PCBs
  1575. */
  1576. static void _mdns_probe_all_pcbs(mdns_srv_item_t ** services, size_t len, bool probe_ip, bool clear_old_probe)
  1577. {
  1578. uint8_t i, j;
  1579. for (i=0; i<MDNS_IF_MAX; i++) {
  1580. for (j=0; j<MDNS_IP_PROTOCOL_MAX; j++) {
  1581. if (_mdns_server->interfaces[i].pcbs[j].pcb) {
  1582. mdns_pcb_t * _pcb = &_mdns_server->interfaces[i].pcbs[j];
  1583. if (clear_old_probe) {
  1584. free(_pcb->probe_services);
  1585. _pcb->probe_services = NULL;
  1586. _pcb->probe_services_len = 0;
  1587. _pcb->probe_running = false;
  1588. }
  1589. _mdns_init_pcb_probe((mdns_if_t)i, (mdns_ip_protocol_t)j, services, len, probe_ip);
  1590. }
  1591. }
  1592. }
  1593. }
  1594. /**
  1595. * @brief Send announcement on all active PCBs
  1596. */
  1597. static void _mdns_announce_all_pcbs(mdns_srv_item_t ** services, size_t len, bool include_ip)
  1598. {
  1599. uint8_t i, j;
  1600. for (i=0; i<MDNS_IF_MAX; i++) {
  1601. for (j=0; j<MDNS_IP_PROTOCOL_MAX; j++) {
  1602. _mdns_announce_pcb((mdns_if_t)i, (mdns_ip_protocol_t)j, services, len, include_ip);
  1603. }
  1604. }
  1605. }
  1606. /**
  1607. * @brief Restart the responder on all active PCBs
  1608. */
  1609. static void _mdns_send_final_bye(bool include_ip)
  1610. {
  1611. //collect all services and start probe
  1612. size_t srv_count = 0;
  1613. mdns_srv_item_t * a = _mdns_server->services;
  1614. while (a) {
  1615. srv_count++;
  1616. a = a->next;
  1617. }
  1618. if (!srv_count) {
  1619. return;
  1620. }
  1621. mdns_srv_item_t * services[srv_count];
  1622. size_t i = 0;
  1623. a = _mdns_server->services;
  1624. while (a) {
  1625. services[i++] = a;
  1626. a = a->next;
  1627. }
  1628. _mdns_send_bye(services, srv_count, include_ip);
  1629. }
  1630. /**
  1631. * @brief Stop the responder on all services without instance
  1632. */
  1633. static void _mdns_send_bye_all_pcbs_no_instance(bool include_ip)
  1634. {
  1635. size_t srv_count = 0;
  1636. mdns_srv_item_t * a = _mdns_server->services;
  1637. while (a) {
  1638. if (!a->service->instance) {
  1639. srv_count++;
  1640. }
  1641. a = a->next;
  1642. }
  1643. if (!srv_count) {
  1644. return;
  1645. }
  1646. mdns_srv_item_t * services[srv_count];
  1647. size_t i = 0;
  1648. a = _mdns_server->services;
  1649. while (a) {
  1650. if (!a->service->instance) {
  1651. services[i++] = a;
  1652. }
  1653. a = a->next;
  1654. }
  1655. _mdns_send_bye(services, srv_count, include_ip);
  1656. }
  1657. /**
  1658. * @brief Restart the responder on all services without instance
  1659. */
  1660. static void _mdns_restart_all_pcbs_no_instance(void)
  1661. {
  1662. size_t srv_count = 0;
  1663. mdns_srv_item_t * a = _mdns_server->services;
  1664. while (a) {
  1665. if (!a->service->instance) {
  1666. srv_count++;
  1667. }
  1668. a = a->next;
  1669. }
  1670. if (!srv_count) {
  1671. return;
  1672. }
  1673. mdns_srv_item_t * services[srv_count];
  1674. size_t i = 0;
  1675. a = _mdns_server->services;
  1676. while (a) {
  1677. if (!a->service->instance) {
  1678. services[i++] = a;
  1679. }
  1680. a = a->next;
  1681. }
  1682. _mdns_probe_all_pcbs(services, srv_count, false, true);
  1683. }
  1684. /**
  1685. * @brief Restart the responder on all active PCBs
  1686. */
  1687. static void _mdns_restart_all_pcbs(void)
  1688. {
  1689. _mdns_clear_tx_queue_head();
  1690. size_t srv_count = 0;
  1691. mdns_srv_item_t * a = _mdns_server->services;
  1692. while (a) {
  1693. srv_count++;
  1694. a = a->next;
  1695. }
  1696. mdns_srv_item_t * services[srv_count];
  1697. size_t l = 0;
  1698. a = _mdns_server->services;
  1699. while (a) {
  1700. services[l++] = a;
  1701. a = a->next;
  1702. }
  1703. _mdns_probe_all_pcbs(services, srv_count, true, true);
  1704. }
  1705. /**
  1706. * @brief creates/allocates new text item list
  1707. * @param num_items service number of txt items or 0
  1708. * @param txt service txt items array or NULL
  1709. *
  1710. * @return pointer to the linked txt item list or NULL
  1711. */
  1712. static mdns_txt_linked_item_t * _mdns_allocate_txt(size_t num_items, mdns_txt_item_t txt[])
  1713. {
  1714. mdns_txt_linked_item_t * new_txt = NULL;
  1715. size_t i = 0;
  1716. if (num_items) {
  1717. for (i=0; i<num_items; i++) {
  1718. mdns_txt_linked_item_t * new_item = (mdns_txt_linked_item_t *)malloc(sizeof(mdns_txt_linked_item_t));
  1719. if (!new_item) {
  1720. HOOK_MALLOC_FAILED;
  1721. break;
  1722. }
  1723. new_item->key = strdup(txt[i].key);
  1724. if (!new_item->key) {
  1725. free(new_item);
  1726. break;
  1727. }
  1728. new_item->value = strdup(txt[i].value);
  1729. if (!new_item->value) {
  1730. free((char *)new_item->key);
  1731. free(new_item);
  1732. break;
  1733. }
  1734. new_item->next = new_txt;
  1735. new_txt = new_item;
  1736. }
  1737. }
  1738. return new_txt;
  1739. }
  1740. static void _mdns_free_linked_txt(mdns_txt_linked_item_t *txt)
  1741. {
  1742. mdns_txt_linked_item_t *t;
  1743. while (txt) {
  1744. t = txt;
  1745. txt = txt->next;
  1746. free((char *)t->value);
  1747. free((char *)t->key);
  1748. free(t);
  1749. }
  1750. }
  1751. /**
  1752. * @brief creates/allocates new service
  1753. * @param service service type
  1754. * @param proto service proto
  1755. * @param port service port
  1756. * @param instance service instance
  1757. * @param num_items service number of txt items or 0
  1758. * @param txt service txt items array or NULL
  1759. *
  1760. * @return pointer to the service or NULL on error
  1761. */
  1762. static mdns_service_t * _mdns_create_service(const char * service, const char * proto, uint16_t port, const char * instance, size_t num_items, mdns_txt_item_t txt[])
  1763. {
  1764. mdns_service_t * s = (mdns_service_t *)malloc(sizeof(mdns_service_t));
  1765. if (!s) {
  1766. HOOK_MALLOC_FAILED;
  1767. return NULL;
  1768. }
  1769. mdns_txt_linked_item_t * new_txt = _mdns_allocate_txt(num_items, txt);
  1770. if (num_items && new_txt == NULL) {
  1771. free(s);
  1772. return NULL;
  1773. }
  1774. s->priority = 0;
  1775. s->weight = 0;
  1776. s->instance = instance?strndup(instance, MDNS_NAME_BUF_LEN - 1):NULL;
  1777. s->txt = new_txt;
  1778. s->port = port;
  1779. s->service = strndup(service, MDNS_NAME_BUF_LEN - 1);
  1780. if (!s->service) {
  1781. free(s);
  1782. return NULL;
  1783. }
  1784. s->proto = strndup(proto, MDNS_NAME_BUF_LEN - 1);
  1785. if (!s->proto) {
  1786. free((char *)s->service);
  1787. free(s);
  1788. return NULL;
  1789. }
  1790. return s;
  1791. }
  1792. /**
  1793. * @brief Remove and free service answer from answer list (destination)
  1794. */
  1795. static void _mdns_dealloc_scheduled_service_answers(mdns_out_answer_t ** destination, mdns_service_t * service)
  1796. {
  1797. mdns_out_answer_t * d = *destination;
  1798. if (!d) {
  1799. return;
  1800. }
  1801. while (d && d->service == service) {
  1802. *destination = d->next;
  1803. free(d);
  1804. d = *destination;
  1805. }
  1806. while (d && d->next) {
  1807. mdns_out_answer_t * a = d->next;
  1808. if (a->service == service) {
  1809. d->next = a->next;
  1810. free(a);
  1811. } else {
  1812. d = d->next;
  1813. }
  1814. }
  1815. }
  1816. /**
  1817. * @brief Find, remove and free answers and scheduled packets for service
  1818. */
  1819. static void _mdns_remove_scheduled_service_packets(mdns_service_t * service)
  1820. {
  1821. if (!service) {
  1822. return;
  1823. }
  1824. mdns_tx_packet_t * p = NULL;
  1825. mdns_tx_packet_t * q = _mdns_server->tx_queue_head;
  1826. while (q) {
  1827. bool had_answers = (q->answers != NULL);
  1828. _mdns_dealloc_scheduled_service_answers(&(q->answers), service);
  1829. _mdns_dealloc_scheduled_service_answers(&(q->additional), service);
  1830. _mdns_dealloc_scheduled_service_answers(&(q->servers), service);
  1831. mdns_pcb_t * _pcb = &_mdns_server->interfaces[q->tcpip_if].pcbs[q->ip_protocol];
  1832. if(_pcb->pcb) {
  1833. if (PCB_STATE_IS_PROBING(_pcb)) {
  1834. uint8_t i;
  1835. //check if we are probing this service
  1836. for (i=0; i<_pcb->probe_services_len; i++) {
  1837. mdns_srv_item_t * s = _pcb->probe_services[i];
  1838. if (s->service == service){
  1839. break;
  1840. }
  1841. }
  1842. if (i < _pcb->probe_services_len) {
  1843. if (_pcb->probe_services_len > 1) {
  1844. uint8_t n;
  1845. for (n=(i+1); n<_pcb->probe_services_len; n++) {
  1846. _pcb->probe_services[n-1] = _pcb->probe_services[n];
  1847. }
  1848. _pcb->probe_services_len--;
  1849. } else {
  1850. _pcb->probe_services_len = 0;
  1851. free(_pcb->probe_services);
  1852. _pcb->probe_services = NULL;
  1853. if (!_pcb->probe_ip) {
  1854. _pcb->probe_running = false;
  1855. _pcb->state = PCB_RUNNING;
  1856. }
  1857. }
  1858. if (q->questions) {
  1859. mdns_out_question_t * qsn = NULL;
  1860. mdns_out_question_t * qs = q->questions;
  1861. if (qs->type == MDNS_TYPE_ANY
  1862. && qs->service && strcmp(qs->service, service->service) == 0
  1863. && qs->proto && strcmp(qs->proto, service->proto) == 0)
  1864. {
  1865. q->questions = q->questions->next;
  1866. free(qs);
  1867. } else while (qs->next) {
  1868. qsn = qs->next;
  1869. if (qsn->type == MDNS_TYPE_ANY
  1870. && qsn->service && strcmp(qsn->service, service->service) == 0
  1871. && qsn->proto && strcmp(qsn->proto, service->proto) == 0)
  1872. {
  1873. qs->next = qsn->next;
  1874. free(qsn);
  1875. break;
  1876. }
  1877. qs = qs->next;
  1878. }
  1879. }
  1880. }
  1881. } else if (PCB_STATE_IS_ANNOUNCING(_pcb)) {
  1882. //if answers were cleared, set to running
  1883. if (had_answers && q->answers == NULL) {
  1884. _pcb->state = PCB_RUNNING;
  1885. }
  1886. }
  1887. }
  1888. p = q;
  1889. q = q->next;
  1890. if(!p->questions && !p->answers && !p->additional && !p->servers){
  1891. queueDetach(mdns_tx_packet_t, _mdns_server->tx_queue_head, p);
  1892. _mdns_free_tx_packet(p);
  1893. }
  1894. }
  1895. }
  1896. /**
  1897. * @brief free service memory
  1898. *
  1899. * @param service the service
  1900. */
  1901. static void _mdns_free_service(mdns_service_t * service)
  1902. {
  1903. if (!service) {
  1904. return;
  1905. }
  1906. free((char *)service->instance);
  1907. free((char *)service->service);
  1908. free((char *)service->proto);
  1909. while (service->txt) {
  1910. mdns_txt_linked_item_t * s = service->txt;
  1911. service->txt = service->txt->next;
  1912. free((char *)s->key);
  1913. free((char *)s->value);
  1914. free(s);
  1915. }
  1916. free(service->txt);
  1917. free(service);
  1918. }
  1919. /*
  1920. * Received Packet Handling
  1921. * */
  1922. /**
  1923. * @brief Detect SRV collision
  1924. */
  1925. static int _mdns_check_srv_collision(mdns_service_t * service, uint16_t priority, uint16_t weight, uint16_t port, const char * host, const char * domain)
  1926. {
  1927. if (_str_null_or_empty(_mdns_server->hostname)) {
  1928. return 0;
  1929. }
  1930. size_t our_host_len = strlen(_mdns_server->hostname);
  1931. size_t our_len = 14 + our_host_len;
  1932. size_t their_host_len = strlen(host);
  1933. size_t their_domain_len = strlen(domain);
  1934. size_t their_len = 9 + their_host_len + their_domain_len;
  1935. if (their_len > our_len) {
  1936. return 1;//they win
  1937. } else if (their_len < our_len) {
  1938. return -1;//we win
  1939. }
  1940. uint16_t our_index = 0;
  1941. uint8_t our_data[our_len];
  1942. _mdns_append_u16(our_data, &our_index, service->priority);
  1943. _mdns_append_u16(our_data, &our_index, service->weight);
  1944. _mdns_append_u16(our_data, &our_index, service->port);
  1945. our_data[our_index++] = our_host_len;
  1946. memcpy(our_data + our_index, _mdns_server->hostname, our_host_len);
  1947. our_index += our_host_len;
  1948. our_data[our_index++] = 5;
  1949. memcpy(our_data + our_index, MDNS_DEFAULT_DOMAIN, 5);
  1950. our_index += 5;
  1951. our_data[our_index++] = 0;
  1952. uint16_t their_index = 0;
  1953. uint8_t their_data[their_len];
  1954. _mdns_append_u16(their_data, &their_index, priority);
  1955. _mdns_append_u16(their_data, &their_index, weight);
  1956. _mdns_append_u16(their_data, &their_index, port);
  1957. their_data[their_index++] = their_host_len;
  1958. memcpy(their_data + their_index, host, their_host_len);
  1959. their_index += their_host_len;
  1960. their_data[their_index++] = their_domain_len;
  1961. memcpy(their_data + their_index, domain, their_domain_len);
  1962. their_index += their_domain_len;
  1963. their_data[their_index++] = 0;
  1964. int ret = memcmp(our_data, their_data, our_len);
  1965. if (ret > 0) {
  1966. return -1;//we win
  1967. } else if (ret < 0) {
  1968. return 1;//they win
  1969. }
  1970. return 0;//same
  1971. }
  1972. /**
  1973. * @brief Detect TXT collision
  1974. */
  1975. static int _mdns_check_txt_collision(mdns_service_t * service, const uint8_t * data, size_t len)
  1976. {
  1977. size_t data_len = 0;
  1978. if (len == 1 && service->txt) {
  1979. return -1;//we win
  1980. } else if (len > 1 && !service->txt) {
  1981. return 1;//they win
  1982. } else if (len == 1 && !service->txt) {
  1983. return 0;//same
  1984. }
  1985. mdns_txt_linked_item_t * txt = service->txt;
  1986. while (txt) {
  1987. data_len += 2 + strlen(txt->key) + strlen(txt->value);
  1988. txt = txt->next;
  1989. }
  1990. if (len > data_len) {
  1991. return 1;//they win
  1992. } else if (len < data_len) {
  1993. return -1;//we win
  1994. }
  1995. uint8_t ours[len];
  1996. uint16_t index = 0;
  1997. char * tmp;
  1998. txt = service->txt;
  1999. while (txt) {
  2000. tmp = (char *)malloc(2 + strlen(txt->key) + strlen(txt->value));
  2001. if (tmp) {
  2002. sprintf(tmp, "%s=%s", txt->key, txt->value);
  2003. _mdns_append_string(ours, &index, tmp);
  2004. free(tmp);
  2005. } else {
  2006. HOOK_MALLOC_FAILED;
  2007. // continue
  2008. }
  2009. txt = txt->next;
  2010. }
  2011. int ret = memcmp(ours, data, len);
  2012. if (ret > 0) {
  2013. return -1;//we win
  2014. } else if (ret < 0) {
  2015. return 1;//they win
  2016. }
  2017. return 0;//same
  2018. }
  2019. /**
  2020. * @brief Set interface as duplicate if another is found on the same subnet
  2021. */
  2022. static void _mdns_dup_interface(mdns_if_t tcpip_if)
  2023. {
  2024. uint8_t i;
  2025. mdns_if_t other_if = _mdns_get_other_if (tcpip_if);
  2026. for (i=0; i<MDNS_IP_PROTOCOL_MAX; i++) {
  2027. if (_mdns_server->interfaces[other_if].pcbs[i].pcb) {
  2028. //stop this interface and mark as dup
  2029. if (_mdns_server->interfaces[tcpip_if].pcbs[i].pcb) {
  2030. _mdns_clear_pcb_tx_queue_head(tcpip_if, i);
  2031. _mdns_pcb_deinit(tcpip_if, i);
  2032. }
  2033. _mdns_server->interfaces[tcpip_if].pcbs[i].state = PCB_DUP;
  2034. _mdns_announce_pcb(other_if, i, NULL, 0, true);
  2035. }
  2036. }
  2037. }
  2038. /**
  2039. * @brief Detect IPv4 address collision
  2040. */
  2041. static int _mdns_check_a_collision(esp_ip4_addr_t * ip, mdns_if_t tcpip_if)
  2042. {
  2043. esp_netif_ip_info_t if_ip_info;
  2044. esp_netif_ip_info_t other_ip_info;
  2045. if (!ip->addr) {
  2046. return 1;//denial! they win
  2047. }
  2048. if (esp_netif_get_ip_info(_mdns_get_esp_netif(tcpip_if), &if_ip_info)) {
  2049. return 1;//they win
  2050. }
  2051. int ret = memcmp((uint8_t*)&if_ip_info.ip.addr, (uint8_t*)&ip->addr, sizeof(esp_ip4_addr_t));
  2052. if (ret > 0) {
  2053. return -1;//we win
  2054. } else if (ret < 0) {
  2055. //is it the other interface?
  2056. mdns_if_t other_if = _mdns_get_other_if (tcpip_if);
  2057. if (other_if == MDNS_IF_MAX) {
  2058. return 1;//AP interface! They win
  2059. }
  2060. if (esp_netif_get_ip_info(_mdns_get_esp_netif(other_if), &other_ip_info)) {
  2061. return 1;//IPv4 not active! They win
  2062. }
  2063. if (ip->addr != other_ip_info.ip.addr) {
  2064. return 1;//IPv4 not ours! They win
  2065. }
  2066. _mdns_dup_interface(tcpip_if);
  2067. return 2;//they win
  2068. }
  2069. return 0;//same
  2070. }
  2071. /**
  2072. * @brief Detect IPv6 address collision
  2073. */
  2074. static int _mdns_check_aaaa_collision(esp_ip6_addr_t * ip, mdns_if_t tcpip_if)
  2075. {
  2076. struct esp_ip6_addr if_ip6;
  2077. struct esp_ip6_addr other_ip6;
  2078. if (_ipv6_address_is_zero(*ip)) {
  2079. return 1;//denial! they win
  2080. }
  2081. if (esp_netif_get_ip6_linklocal(_mdns_get_esp_netif(tcpip_if), &if_ip6)) {
  2082. return 1;//they win
  2083. }
  2084. int ret = memcmp((uint8_t*)&if_ip6.addr, (uint8_t*)ip->addr, _MDNS_SIZEOF_IP6_ADDR);
  2085. if (ret > 0) {
  2086. return -1;//we win
  2087. } else if (ret < 0) {
  2088. //is it the other interface?
  2089. mdns_if_t other_if = _mdns_get_other_if (tcpip_if);
  2090. if (other_if == MDNS_IF_MAX) {
  2091. return 1;//AP interface! They win
  2092. }
  2093. if (esp_netif_get_ip6_linklocal(_mdns_get_esp_netif(other_if), &other_ip6)) {
  2094. return 1;//IPv6 not active! They win
  2095. }
  2096. if (memcmp((uint8_t*)&other_ip6.addr, (uint8_t*)ip->addr, _MDNS_SIZEOF_IP6_ADDR)) {
  2097. return 1;//IPv6 not ours! They win
  2098. }
  2099. _mdns_dup_interface(tcpip_if);
  2100. return 2;//they win
  2101. }
  2102. return 0;//same
  2103. }
  2104. /**
  2105. * @brief Check if parsed name is discovery
  2106. */
  2107. static bool _mdns_name_is_discovery(mdns_name_t * name, uint16_t type)
  2108. {
  2109. return (
  2110. (name->host && name->host[0] && !strcasecmp(name->host, "_services"))
  2111. && (name->service && name->service[0] && !strcasecmp(name->service, "_dns-sd"))
  2112. && (name->proto && name->proto[0] && !strcasecmp(name->proto, "_udp"))
  2113. && (name->domain && name->domain[0] && !strcasecmp(name->domain, MDNS_DEFAULT_DOMAIN))
  2114. && type == MDNS_TYPE_PTR
  2115. );
  2116. }
  2117. /**
  2118. * @brief Check if the parsed name is ours (matches service or host name)
  2119. */
  2120. static bool _mdns_name_is_ours(mdns_name_t * name)
  2121. {
  2122. //domain have to be "local"
  2123. if (_str_null_or_empty(name->domain) || strcasecmp(name->domain, MDNS_DEFAULT_DOMAIN)) {
  2124. return false;
  2125. }
  2126. //if service and proto are empty, host must match out hostname
  2127. if (_str_null_or_empty(name->service) && _str_null_or_empty(name->proto)) {
  2128. if (!_str_null_or_empty(name->host)
  2129. && !_str_null_or_empty(_mdns_server->hostname)
  2130. && strcasecmp(name->host, _mdns_server->hostname) == 0)
  2131. {
  2132. return true;
  2133. }
  2134. return false;
  2135. }
  2136. //if service or proto is empty, name is invalid
  2137. if (_str_null_or_empty(name->service) || _str_null_or_empty(name->proto)) {
  2138. return false;
  2139. }
  2140. //find the service
  2141. mdns_srv_item_t * service = _mdns_get_service_item(name->service, name->proto);
  2142. if (!service) {
  2143. return false;
  2144. }
  2145. //if host is empty and we have service, we have success
  2146. if (_str_null_or_empty(name->host)) {
  2147. return true;
  2148. }
  2149. //OK we have host in the name. find what is the instance of the service
  2150. const char * instance = _mdns_get_service_instance_name(service->service);
  2151. if (instance == NULL) {
  2152. return false;
  2153. }
  2154. //compare the instance against the name
  2155. if (strcasecmp(name->host, instance) == 0) {
  2156. return true;
  2157. }
  2158. return false;
  2159. }
  2160. /**
  2161. * @brief read uint16_t from a packet
  2162. * @param packet the packet
  2163. * @param index index in the packet where the value starts
  2164. *
  2165. * @return the value
  2166. */
  2167. static inline uint16_t _mdns_read_u16(const uint8_t * packet, uint16_t index)
  2168. {
  2169. return (uint16_t)(packet[index]) << 8 | packet[index+1];
  2170. }
  2171. /**
  2172. * @brief read uint32_t from a packet
  2173. * @param packet the packet
  2174. * @param index index in the packet where the value starts
  2175. *
  2176. * @return the value
  2177. */
  2178. static inline uint32_t _mdns_read_u32(const uint8_t * packet, uint16_t index)
  2179. {
  2180. return (uint32_t)(packet[index]) << 24 | (uint32_t)(packet[index+1]) << 16 | (uint32_t)(packet[index+2]) << 8 | packet[index+3];
  2181. }
  2182. /**
  2183. * @brief reads and formats MDNS FQDN into mdns_name_t structure
  2184. *
  2185. * @param packet MDNS packet
  2186. * @param start Starting point of FQDN
  2187. * @param name mdns_name_t structure to populate
  2188. *
  2189. * @return the address after the parsed FQDN in the packet or NULL on error
  2190. */
  2191. static const uint8_t * _mdns_parse_fqdn(const uint8_t * packet, const uint8_t * start, mdns_name_t * name)
  2192. {
  2193. name->parts = 0;
  2194. name->sub = 0;
  2195. name->host[0] = 0;
  2196. name->service[0] = 0;
  2197. name->proto[0] = 0;
  2198. name->domain[0] = 0;
  2199. name->invalid = false;
  2200. static char buf[MDNS_NAME_BUF_LEN];
  2201. const uint8_t * next_data = (uint8_t*)_mdns_read_fqdn(packet, start, name, buf);
  2202. if (!next_data) {
  2203. return 0;
  2204. }
  2205. if (!name->parts || name->invalid) {
  2206. return next_data;
  2207. }
  2208. if (name->parts == 3) {
  2209. memmove((uint8_t*)name + (MDNS_NAME_BUF_LEN), (uint8_t*)name, 3*(MDNS_NAME_BUF_LEN));
  2210. name->host[0] = 0;
  2211. } else if (name->parts == 2) {
  2212. memmove((uint8_t*)(name->domain), (uint8_t*)(name->service), (MDNS_NAME_BUF_LEN));
  2213. name->service[0] = 0;
  2214. name->proto[0] = 0;
  2215. }
  2216. if (strcasecmp(name->domain, MDNS_DEFAULT_DOMAIN) == 0 || strcasecmp(name->domain, "arpa") == 0) {
  2217. return next_data;
  2218. }
  2219. return 0;
  2220. }
  2221. /**
  2222. * @brief Called from parser to check if question matches particular service
  2223. */
  2224. static bool _mdns_question_matches(mdns_parsed_question_t * question, uint16_t type, mdns_srv_item_t * service)
  2225. {
  2226. if (question->type != type) {
  2227. return false;
  2228. }
  2229. if (type == MDNS_TYPE_A || type == MDNS_TYPE_AAAA) {
  2230. return true;
  2231. } else if (type == MDNS_TYPE_PTR || type == MDNS_TYPE_SDPTR) {
  2232. if (question->service && question->proto && question->domain
  2233. && !strcasecmp(service->service->service, question->service)
  2234. && !strcasecmp(service->service->proto, question->proto)
  2235. && !strcasecmp(MDNS_DEFAULT_DOMAIN, question->domain)) {
  2236. return true;
  2237. }
  2238. } else if (type == MDNS_TYPE_SRV || type == MDNS_TYPE_TXT) {
  2239. const char * name = _mdns_get_service_instance_name(service->service);
  2240. if (name && question->host && !strcasecmp(name, question->host)
  2241. && !strcasecmp(service->service->service, question->service)
  2242. && !strcasecmp(service->service->proto, question->proto)
  2243. && !strcasecmp(MDNS_DEFAULT_DOMAIN, question->domain)) {
  2244. return true;
  2245. }
  2246. }
  2247. return false;
  2248. }
  2249. /**
  2250. * @brief Removes saved question from parsed data
  2251. */
  2252. static void _mdns_remove_parsed_question(mdns_parsed_packet_t * parsed_packet, uint16_t type, mdns_srv_item_t * service)
  2253. {
  2254. mdns_parsed_question_t * q = parsed_packet->questions;
  2255. if (_mdns_question_matches(q, type, service)) {
  2256. parsed_packet->questions = q->next;
  2257. free(q->host);
  2258. free(q->service);
  2259. free(q->proto);
  2260. free(q->domain);
  2261. free(q);
  2262. return;
  2263. }
  2264. while (q->next) {
  2265. mdns_parsed_question_t * p = q->next;
  2266. if (_mdns_question_matches(p, type, service)) {
  2267. q->next = p->next;
  2268. free(p->host);
  2269. free(p->service);
  2270. free(p->proto);
  2271. free(p->domain);
  2272. free(p);
  2273. return;
  2274. }
  2275. q = q->next;
  2276. }
  2277. }
  2278. /**
  2279. * @brief Get number of items in TXT parsed data
  2280. */
  2281. static int _mdns_txt_items_count_get(const uint8_t * data, size_t len)
  2282. {
  2283. if (len == 1) {
  2284. return 0;
  2285. }
  2286. int num_items = 0;
  2287. uint16_t i=0;
  2288. size_t partLen = 0;
  2289. while (i < len) {
  2290. partLen = data[i++];
  2291. if (!partLen) {
  2292. break;
  2293. }
  2294. if ((i+partLen) > len) {
  2295. return -1;//error
  2296. }
  2297. i+=partLen;
  2298. num_items++;
  2299. }
  2300. return num_items;
  2301. }
  2302. /**
  2303. * @brief Get the length of TXT item's key name
  2304. */
  2305. static int _mdns_txt_item_name_get_len(const uint8_t * data, size_t len)
  2306. {
  2307. int i;
  2308. if (*data == '=') {
  2309. return -1;
  2310. }
  2311. for (i = 0; i < len; i++) {
  2312. if (data[i] == '=') {
  2313. return i;
  2314. }
  2315. }
  2316. return len;
  2317. }
  2318. /**
  2319. * @brief Create TXT result array from parsed TXT data
  2320. */
  2321. static void _mdns_result_txt_create(const uint8_t * data, size_t len, mdns_txt_item_t ** out_txt, size_t * out_count)
  2322. {
  2323. *out_txt = NULL;
  2324. *out_count = 0;
  2325. uint16_t i=0, y;
  2326. size_t partLen = 0;
  2327. int num_items = _mdns_txt_items_count_get(data, len);
  2328. if (num_items < 0) {
  2329. return;//error
  2330. }
  2331. if (!num_items) {
  2332. return;
  2333. }
  2334. mdns_txt_item_t * txt = (mdns_txt_item_t *)malloc(sizeof(mdns_txt_item_t) * num_items);
  2335. if (!txt) {
  2336. HOOK_MALLOC_FAILED;
  2337. return;
  2338. }
  2339. memset(txt, 0, sizeof(mdns_txt_item_t) * num_items);
  2340. size_t txt_num = 0;
  2341. while (i < len) {
  2342. partLen = data[i++];
  2343. if (!partLen) {
  2344. break;
  2345. }
  2346. if ((i+partLen) > len) {
  2347. goto handle_error;//error
  2348. }
  2349. int name_len = _mdns_txt_item_name_get_len(data+i, partLen);
  2350. if (name_len < 0) {//invalid item (no name)
  2351. i += partLen;
  2352. continue;
  2353. }
  2354. char * key = (char *)malloc(name_len + 1);
  2355. if (!key) {
  2356. HOOK_MALLOC_FAILED;
  2357. goto handle_error;//error
  2358. }
  2359. mdns_txt_item_t * t = &txt[txt_num++];
  2360. memcpy(key, data + i, name_len);
  2361. key[name_len] = 0;
  2362. i += name_len + 1;
  2363. t->key = key;
  2364. int value_len = partLen - name_len - 1;
  2365. if (value_len > 0) {
  2366. char * value = (char *)malloc(value_len + 1);
  2367. if (!value) {
  2368. HOOK_MALLOC_FAILED;
  2369. goto handle_error;//error
  2370. }
  2371. memcpy(value, data + i, value_len);
  2372. value[value_len] = 0;
  2373. i += value_len;
  2374. t->value = value;
  2375. }
  2376. }
  2377. *out_txt = txt;
  2378. *out_count = txt_num;
  2379. return;
  2380. handle_error :
  2381. for (y=0; y<txt_num; y++) {
  2382. mdns_txt_item_t * t = &txt[y];
  2383. free((char *)t->key);
  2384. free((char *)t->value);
  2385. }
  2386. free(txt);
  2387. }
  2388. /**
  2389. * @brief Duplicate string or return error
  2390. */
  2391. static esp_err_t _mdns_strdup_check(char ** out, char * in)
  2392. {
  2393. if (in && in[0]) {
  2394. *out = strdup(in);
  2395. if (!*out) {
  2396. return ESP_FAIL;
  2397. }
  2398. return ESP_OK;
  2399. }
  2400. *out = NULL;
  2401. return ESP_OK;
  2402. }
  2403. /**
  2404. * @brief main packet parser
  2405. *
  2406. * @param packet the packet
  2407. */
  2408. void mdns_parse_packet(mdns_rx_packet_t * packet)
  2409. {
  2410. static mdns_name_t n;
  2411. mdns_header_t header;
  2412. const uint8_t * data = (const uint8_t*)packet->pb->payload;
  2413. size_t len = packet->pb->len;
  2414. const uint8_t * content = data + MDNS_HEAD_LEN;
  2415. bool do_not_reply = false;
  2416. mdns_search_once_t * search_result = NULL;
  2417. #ifdef MDNS_ENABLE_DEBUG
  2418. _mdns_dbg_printf("\nRX[%u][%u]: ", packet->tcpip_if, (uint32_t)packet->ip_protocol);
  2419. if (packet->src.type == IPADDR_TYPE_V4) {
  2420. _mdns_dbg_printf("From: " IPSTR ":%u, To: " IPSTR ", ", IP2STR(&packet->src.u_addr.ip4), packet->src_port, IP2STR(&packet->dest.u_addr.ip4));
  2421. } else {
  2422. _mdns_dbg_printf("From: " IPV6STR ":%u, To: " IPV6STR ", ", IPV62STR(packet->src.u_addr.ip6), packet->src_port, IPV62STR(packet->dest.u_addr.ip6));
  2423. }
  2424. mdns_debug_packet(data, len);
  2425. #endif
  2426. mdns_parsed_packet_t * parsed_packet = (mdns_parsed_packet_t *)malloc(sizeof(mdns_parsed_packet_t));
  2427. if (!parsed_packet) {
  2428. HOOK_MALLOC_FAILED;
  2429. return;
  2430. }
  2431. memset(parsed_packet, 0, sizeof(mdns_parsed_packet_t));
  2432. mdns_name_t * name = &n;
  2433. memset(name, 0, sizeof(mdns_name_t));
  2434. header.id = _mdns_read_u16(data, MDNS_HEAD_ID_OFFSET);
  2435. header.flags.value = _mdns_read_u16(data, MDNS_HEAD_FLAGS_OFFSET);
  2436. header.questions = _mdns_read_u16(data, MDNS_HEAD_QUESTIONS_OFFSET);
  2437. header.answers = _mdns_read_u16(data, MDNS_HEAD_ANSWERS_OFFSET);
  2438. header.servers = _mdns_read_u16(data, MDNS_HEAD_SERVERS_OFFSET);
  2439. header.additional = _mdns_read_u16(data, MDNS_HEAD_ADDITIONAL_OFFSET);
  2440. if (header.flags.value == MDNS_FLAGS_AUTHORITATIVE && packet->src_port != MDNS_SERVICE_PORT) {
  2441. free(parsed_packet);
  2442. return;
  2443. }
  2444. //if we have not set the hostname, we can not answer questions
  2445. if (header.questions && !header.answers && _str_null_or_empty(_mdns_server->hostname)) {
  2446. free(parsed_packet);
  2447. return;
  2448. }
  2449. parsed_packet->tcpip_if = packet->tcpip_if;
  2450. parsed_packet->ip_protocol = packet->ip_protocol;
  2451. parsed_packet->multicast = packet->multicast;
  2452. parsed_packet->authoritative = header.flags.value == MDNS_FLAGS_AUTHORITATIVE;
  2453. parsed_packet->distributed = header.flags.value == MDNS_FLAGS_DISTRIBUTED;
  2454. parsed_packet->id = header.id;
  2455. ip_addr_copy(parsed_packet->src, packet->src);
  2456. parsed_packet->src_port = packet->src_port;
  2457. if (header.questions) {
  2458. uint8_t qs = header.questions;
  2459. while (qs--) {
  2460. content = _mdns_parse_fqdn(data, content, name);
  2461. if (!content) {
  2462. header.answers = 0;
  2463. header.additional = 0;
  2464. header.servers = 0;
  2465. goto clear_rx_packet;//error
  2466. }
  2467. uint16_t type = _mdns_read_u16(content, MDNS_TYPE_OFFSET);
  2468. uint16_t mdns_class = _mdns_read_u16(content, MDNS_CLASS_OFFSET);
  2469. bool unicast = !!(mdns_class & 0x8000);
  2470. mdns_class &= 0x7FFF;
  2471. content = content + 4;
  2472. if (mdns_class != 0x0001 || name->invalid) {//bad class or invalid name for this question entry
  2473. continue;
  2474. }
  2475. if (_mdns_name_is_discovery(name, type)) {
  2476. //service discovery
  2477. parsed_packet->discovery = true;
  2478. mdns_srv_item_t * a = _mdns_server->services;
  2479. while (a) {
  2480. mdns_parsed_question_t * question = (mdns_parsed_question_t *)calloc(1, sizeof(mdns_parsed_question_t));
  2481. if (!question) {
  2482. HOOK_MALLOC_FAILED;
  2483. goto clear_rx_packet;
  2484. }
  2485. question->next = parsed_packet->questions;
  2486. parsed_packet->questions = question;
  2487. question->unicast = unicast;
  2488. question->type = MDNS_TYPE_SDPTR;
  2489. question->host = NULL;
  2490. question->service = strdup(a->service->service);
  2491. question->proto = strdup(a->service->proto);
  2492. question->domain = strdup(MDNS_DEFAULT_DOMAIN);
  2493. if (!question->service || !question->proto || !question->domain) {
  2494. goto clear_rx_packet;
  2495. }
  2496. a = a->next;
  2497. }
  2498. continue;
  2499. } else if (name->sub || !_mdns_name_is_ours(name)) {
  2500. continue;
  2501. }
  2502. if (type == MDNS_TYPE_ANY && !_str_null_or_empty(name->host)) {
  2503. parsed_packet->probe = true;
  2504. }
  2505. mdns_parsed_question_t * question = (mdns_parsed_question_t *)calloc(1, sizeof(mdns_parsed_question_t));
  2506. if (!question) {
  2507. HOOK_MALLOC_FAILED;
  2508. goto clear_rx_packet;
  2509. }
  2510. question->next = parsed_packet->questions;
  2511. parsed_packet->questions = question;
  2512. question->unicast = unicast;
  2513. question->type = type;
  2514. if (_mdns_strdup_check(&(question->host), name->host)
  2515. || _mdns_strdup_check(&(question->service), name->service)
  2516. || _mdns_strdup_check(&(question->proto), name->proto)
  2517. || _mdns_strdup_check(&(question->domain), name->domain)) {
  2518. goto clear_rx_packet;
  2519. }
  2520. }
  2521. }
  2522. if (header.questions && !parsed_packet->questions && !parsed_packet->discovery && !header.answers) {
  2523. goto clear_rx_packet;
  2524. } else if (header.answers || header.servers || header.additional) {
  2525. uint16_t recordIndex = 0;
  2526. while (content < (data + len)) {
  2527. content = _mdns_parse_fqdn(data, content, name);
  2528. if (!content) {
  2529. goto clear_rx_packet;//error
  2530. }
  2531. uint16_t type = _mdns_read_u16(content, MDNS_TYPE_OFFSET);
  2532. uint16_t mdns_class = _mdns_read_u16(content, MDNS_CLASS_OFFSET);
  2533. uint32_t ttl = _mdns_read_u32(content, MDNS_TTL_OFFSET);
  2534. uint16_t data_len = _mdns_read_u16(content, MDNS_LEN_OFFSET);
  2535. const uint8_t * data_ptr = content + MDNS_DATA_OFFSET;
  2536. mdns_class &= 0x7FFF;
  2537. content = data_ptr + data_len;
  2538. if (content > (data + len)) {
  2539. goto clear_rx_packet;
  2540. }
  2541. bool discovery = false;
  2542. bool ours = false;
  2543. mdns_srv_item_t * service = NULL;
  2544. mdns_parsed_record_type_t record_type = MDNS_ANSWER;
  2545. if (recordIndex >= (header.answers + header.servers)) {
  2546. record_type = MDNS_EXTRA;
  2547. } else if (recordIndex >= (header.answers)) {
  2548. record_type = MDNS_NS;
  2549. }
  2550. recordIndex++;
  2551. if (type == MDNS_TYPE_NSEC || type == MDNS_TYPE_OPT) {
  2552. //skip NSEC and OPT
  2553. continue;
  2554. }
  2555. if (parsed_packet->discovery && _mdns_name_is_discovery(name, type)) {
  2556. discovery = true;
  2557. } else if (!name->sub && _mdns_name_is_ours(name)) {
  2558. ours = true;
  2559. if (name->service && name->service[0] && name->proto && name->proto[0]) {
  2560. service = _mdns_get_service_item(name->service, name->proto);
  2561. }
  2562. } else {
  2563. if (!parsed_packet->authoritative || record_type == MDNS_NS) {
  2564. //skip this record
  2565. continue;
  2566. }
  2567. search_result = _mdns_search_find_from(_mdns_server->search_once, name, type, packet->tcpip_if, packet->ip_protocol);
  2568. }
  2569. if (type == MDNS_TYPE_PTR) {
  2570. if (!_mdns_parse_fqdn(data, data_ptr, name)) {
  2571. continue;//error
  2572. }
  2573. if (search_result) {
  2574. _mdns_search_result_add_ptr(search_result, name->host, packet->tcpip_if, packet->ip_protocol);
  2575. } else if ((discovery || ours) && !name->sub && _mdns_name_is_ours(name)) {
  2576. if (discovery) {
  2577. service = _mdns_get_service_item(name->service, name->proto);
  2578. _mdns_remove_parsed_question(parsed_packet, MDNS_TYPE_SDPTR, service);
  2579. } else if (parsed_packet->questions && !parsed_packet->probe) {
  2580. _mdns_remove_parsed_question(parsed_packet, type, service);
  2581. } else {
  2582. //check if TTL is more than half of the full TTL value (4500)
  2583. if (ttl > 2250) {
  2584. _mdns_remove_scheduled_answer(packet->tcpip_if, packet->ip_protocol, type, service);
  2585. }
  2586. }
  2587. }
  2588. } else if (type == MDNS_TYPE_SRV) {
  2589. mdns_result_t * result = NULL;
  2590. if (search_result && search_result->type == MDNS_TYPE_PTR) {
  2591. result = search_result->result;
  2592. while (result) {
  2593. if (packet->tcpip_if == result->tcpip_if
  2594. && packet->ip_protocol == result->ip_protocol
  2595. && result->instance_name && !strcmp(name->host, result->instance_name)) {
  2596. break;
  2597. }
  2598. result = result->next;
  2599. }
  2600. if (!result) {
  2601. result = _mdns_search_result_add_ptr(search_result, name->host, packet->tcpip_if, packet->ip_protocol);
  2602. if (!result) {
  2603. continue;//error
  2604. }
  2605. }
  2606. }
  2607. if (!_mdns_parse_fqdn(data, data_ptr + MDNS_SRV_FQDN_OFFSET, name)) {
  2608. continue;//error
  2609. }
  2610. uint16_t priority = _mdns_read_u16(data_ptr, MDNS_SRV_PRIORITY_OFFSET);
  2611. uint16_t weight = _mdns_read_u16(data_ptr, MDNS_SRV_WEIGHT_OFFSET);
  2612. uint16_t port = _mdns_read_u16(data_ptr, MDNS_SRV_PORT_OFFSET);
  2613. if (search_result) {
  2614. if (search_result->type == MDNS_TYPE_PTR) {
  2615. if (!result->hostname) { // assign host/port for this entry only if not previously set
  2616. result->port = port;
  2617. result->hostname = strdup(name->host);
  2618. }
  2619. } else {
  2620. _mdns_search_result_add_srv(search_result, name->host, port, packet->tcpip_if, packet->ip_protocol);
  2621. }
  2622. } else if (ours) {
  2623. if (parsed_packet->questions && !parsed_packet->probe) {
  2624. _mdns_remove_parsed_question(parsed_packet, type, service);
  2625. continue;
  2626. } else if (parsed_packet->distributed) {
  2627. _mdns_remove_scheduled_answer(packet->tcpip_if, packet->ip_protocol, type, service);
  2628. continue;
  2629. }
  2630. //detect collision (-1=won, 0=none, 1=lost)
  2631. int col = 0;
  2632. if (mdns_class > 1) {
  2633. col = 1;
  2634. } else if (!mdns_class) {
  2635. col = -1;
  2636. } else if (service) { // only detect srv collision if service existed
  2637. col = _mdns_check_srv_collision(service->service, priority, weight, port, name->host, name->domain);
  2638. }
  2639. if (col && (parsed_packet->probe || parsed_packet->authoritative)) {
  2640. if (col > 0 || !port) {
  2641. do_not_reply = true;
  2642. if (_mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].probe_running) {
  2643. _mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].failed_probes++;
  2644. if (!_str_null_or_empty(service->service->instance)) {
  2645. char * new_instance = _mdns_mangle_name((char *)service->service->instance);
  2646. if (new_instance) {
  2647. free((char *)service->service->instance);
  2648. service->service->instance = new_instance;
  2649. }
  2650. _mdns_probe_all_pcbs(&service, 1, false, false);
  2651. } else if (!_str_null_or_empty(_mdns_server->instance)) {
  2652. char * new_instance = _mdns_mangle_name((char *)_mdns_server->instance);
  2653. if (new_instance) {
  2654. free((char *)_mdns_server->instance);
  2655. _mdns_server->instance = new_instance;
  2656. }
  2657. _mdns_restart_all_pcbs_no_instance();
  2658. } else {
  2659. char * new_host = _mdns_mangle_name((char *)_mdns_server->hostname);
  2660. if (new_host) {
  2661. free((char *)_mdns_server->hostname);
  2662. _mdns_server->hostname = new_host;
  2663. }
  2664. _mdns_restart_all_pcbs();
  2665. }
  2666. } else {
  2667. _mdns_pcb_send_bye(packet->tcpip_if, packet->ip_protocol, &service, 1, false);
  2668. _mdns_init_pcb_probe(packet->tcpip_if, packet->ip_protocol, &service, 1, false);
  2669. }
  2670. }
  2671. } else if (ttl > 60 && !col && !parsed_packet->authoritative && !parsed_packet->probe && !parsed_packet->questions) {
  2672. _mdns_remove_scheduled_answer(packet->tcpip_if, packet->ip_protocol, type, service);
  2673. }
  2674. }
  2675. } else if (type == MDNS_TYPE_TXT) {
  2676. if (search_result) {
  2677. mdns_txt_item_t * txt = NULL;
  2678. size_t txt_count = 0;
  2679. mdns_result_t * result = NULL;
  2680. if (search_result->type == MDNS_TYPE_PTR) {
  2681. result = search_result->result;
  2682. while (result) {
  2683. if (packet->tcpip_if == result->tcpip_if
  2684. && packet->ip_protocol == result->ip_protocol
  2685. && result->instance_name && !strcmp(name->host, result->instance_name)) {
  2686. break;
  2687. }
  2688. result = result->next;
  2689. }
  2690. if (!result) {
  2691. result = _mdns_search_result_add_ptr(search_result, name->host, packet->tcpip_if, packet->ip_protocol);
  2692. if (!result) {
  2693. continue;//error
  2694. }
  2695. }
  2696. if (!result->txt) {
  2697. _mdns_result_txt_create(data_ptr, data_len, &txt, &txt_count);
  2698. if (txt_count) {
  2699. result->txt = txt;
  2700. result->txt_count = txt_count;
  2701. }
  2702. }
  2703. } else {
  2704. _mdns_result_txt_create(data_ptr, data_len, &txt, &txt_count);
  2705. if (txt_count) {
  2706. _mdns_search_result_add_txt(search_result, txt, txt_count, packet->tcpip_if, packet->ip_protocol);
  2707. }
  2708. }
  2709. } else if (ours) {
  2710. if (parsed_packet->questions && !parsed_packet->probe) {
  2711. _mdns_remove_parsed_question(parsed_packet, type, service);
  2712. continue;
  2713. }
  2714. //detect collision (-1=won, 0=none, 1=lost)
  2715. int col = 0;
  2716. if (mdns_class > 1) {
  2717. col = 1;
  2718. } else if (!mdns_class) {
  2719. col = -1;
  2720. } else if (service) { // only detect txt collision if service existed
  2721. col = _mdns_check_txt_collision(service->service, data_ptr, data_len);
  2722. }
  2723. if (col && !_mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].probe_running) {
  2724. do_not_reply = true;
  2725. _mdns_init_pcb_probe(packet->tcpip_if, packet->ip_protocol, &service, 1, true);
  2726. } else if (ttl > 2250 && !col && !parsed_packet->authoritative && !parsed_packet->probe && !parsed_packet->questions && !_mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].probe_running) {
  2727. _mdns_remove_scheduled_answer(packet->tcpip_if, packet->ip_protocol, type, service);
  2728. }
  2729. }
  2730. } else if (type == MDNS_TYPE_AAAA) {//ipv6
  2731. esp_ip_addr_t ip6;
  2732. ip6.type = IPADDR_TYPE_V6;
  2733. memcpy(ip6.u_addr.ip6.addr, data_ptr, MDNS_ANSWER_AAAA_SIZE);
  2734. if (search_result) {
  2735. //check for more applicable searches (PTR & A/AAAA at the same time)
  2736. while (search_result) {
  2737. _mdns_search_result_add_ip(search_result, name->host, &ip6, packet->tcpip_if, packet->ip_protocol);
  2738. search_result = _mdns_search_find_from(search_result->next, name, type, packet->tcpip_if, packet->ip_protocol);
  2739. }
  2740. } else if (ours) {
  2741. if (parsed_packet->questions && !parsed_packet->probe) {
  2742. _mdns_remove_parsed_question(parsed_packet, type, NULL);
  2743. continue;
  2744. }
  2745. //detect collision (-1=won, 0=none, 1=lost)
  2746. int col = 0;
  2747. if (mdns_class > 1) {
  2748. col = 1;
  2749. } else if (!mdns_class) {
  2750. col = -1;
  2751. } else {
  2752. col = _mdns_check_aaaa_collision(&(ip6.u_addr.ip6), packet->tcpip_if);
  2753. }
  2754. if (col == 2) {
  2755. goto clear_rx_packet;
  2756. } else if (col == 1) {
  2757. do_not_reply = true;
  2758. if (_mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].probe_running) {
  2759. if (col && (parsed_packet->probe || parsed_packet->authoritative)) {
  2760. _mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].failed_probes++;
  2761. char * new_host = _mdns_mangle_name((char *)_mdns_server->hostname);
  2762. if (new_host) {
  2763. free((char *)_mdns_server->hostname);
  2764. _mdns_server->hostname = new_host;
  2765. }
  2766. _mdns_restart_all_pcbs();
  2767. }
  2768. } else {
  2769. _mdns_init_pcb_probe(packet->tcpip_if, packet->ip_protocol, NULL, 0, true);
  2770. }
  2771. } else if (ttl > 60 && !col && !parsed_packet->authoritative && !parsed_packet->probe && !parsed_packet->questions && !_mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].probe_running) {
  2772. _mdns_remove_scheduled_answer(packet->tcpip_if, packet->ip_protocol, type, NULL);
  2773. }
  2774. }
  2775. } else if (type == MDNS_TYPE_A) {
  2776. esp_ip_addr_t ip;
  2777. ip.type = IPADDR_TYPE_V4;
  2778. memcpy(&(ip.u_addr.ip4.addr), data_ptr, 4);
  2779. if (search_result) {
  2780. //check for more applicable searches (PTR & A/AAAA at the same time)
  2781. while (search_result) {
  2782. _mdns_search_result_add_ip(search_result, name->host, &ip, packet->tcpip_if, packet->ip_protocol);
  2783. search_result = _mdns_search_find_from(search_result->next, name, type, packet->tcpip_if, packet->ip_protocol);
  2784. }
  2785. } else if (ours) {
  2786. if (parsed_packet->questions && !parsed_packet->probe) {
  2787. _mdns_remove_parsed_question(parsed_packet, type, NULL);
  2788. continue;
  2789. }
  2790. //detect collision (-1=won, 0=none, 1=lost)
  2791. int col = 0;
  2792. if (mdns_class > 1) {
  2793. col = 1;
  2794. } else if (!mdns_class) {
  2795. col = -1;
  2796. } else {
  2797. col = _mdns_check_a_collision(&(ip.u_addr.ip4), packet->tcpip_if);
  2798. }
  2799. if (col == 2) {
  2800. goto clear_rx_packet;
  2801. } else if (col == 1) {
  2802. do_not_reply = true;
  2803. if (_mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].probe_running) {
  2804. if (col && (parsed_packet->probe || parsed_packet->authoritative)) {
  2805. _mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].failed_probes++;
  2806. char * new_host = _mdns_mangle_name((char *)_mdns_server->hostname);
  2807. if (new_host) {
  2808. free((char *)_mdns_server->hostname);
  2809. _mdns_server->hostname = new_host;
  2810. }
  2811. _mdns_restart_all_pcbs();
  2812. }
  2813. } else {
  2814. _mdns_init_pcb_probe(packet->tcpip_if, packet->ip_protocol, NULL, 0, true);
  2815. }
  2816. } else if (ttl > 60 && !col && !parsed_packet->authoritative && !parsed_packet->probe && !parsed_packet->questions && !_mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].probe_running) {
  2817. _mdns_remove_scheduled_answer(packet->tcpip_if, packet->ip_protocol, type, NULL);
  2818. }
  2819. }
  2820. }
  2821. }
  2822. //end while
  2823. if (parsed_packet->authoritative) {
  2824. _mdns_search_finish_done();
  2825. }
  2826. }
  2827. if (!do_not_reply && _mdns_server->interfaces[packet->tcpip_if].pcbs[packet->ip_protocol].state > PCB_PROBE_3 && (parsed_packet->questions || parsed_packet->discovery)) {
  2828. _mdns_create_answer_from_parsed_packet(parsed_packet);
  2829. }
  2830. clear_rx_packet:
  2831. while (parsed_packet->questions) {
  2832. mdns_parsed_question_t * question = parsed_packet->questions;
  2833. parsed_packet->questions = parsed_packet->questions->next;
  2834. free(question->host);
  2835. free(question->service);
  2836. free(question->proto);
  2837. free(question->domain);
  2838. free(question);
  2839. }
  2840. free(parsed_packet);
  2841. }
  2842. /**
  2843. * @brief Enable mDNS interface
  2844. */
  2845. void _mdns_enable_pcb(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  2846. {
  2847. if (!_mdns_server->interfaces[tcpip_if].pcbs[ip_protocol].pcb) {
  2848. if (_mdns_pcb_init(tcpip_if, ip_protocol)) {
  2849. return;
  2850. }
  2851. }
  2852. _mdns_restart_pcb(tcpip_if, ip_protocol);
  2853. }
  2854. /**
  2855. * @brief Disable mDNS interface
  2856. */
  2857. void _mdns_disable_pcb(mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  2858. {
  2859. _mdns_clean_netif_ptr(tcpip_if);
  2860. if (_mdns_server->interfaces[tcpip_if].pcbs[ip_protocol].pcb) {
  2861. _mdns_clear_pcb_tx_queue_head(tcpip_if, ip_protocol);
  2862. _mdns_pcb_deinit(tcpip_if, ip_protocol);
  2863. mdns_if_t other_if = _mdns_get_other_if (tcpip_if);
  2864. if (other_if != MDNS_IF_MAX && _mdns_server->interfaces[other_if].pcbs[ip_protocol].state == PCB_DUP) {
  2865. _mdns_server->interfaces[other_if].pcbs[ip_protocol].state = PCB_OFF;
  2866. _mdns_enable_pcb(other_if, ip_protocol);
  2867. }
  2868. }
  2869. _mdns_server->interfaces[tcpip_if].pcbs[ip_protocol].state = PCB_OFF;
  2870. }
  2871. /**
  2872. * @brief Dispatch interface changes based on system events
  2873. */
  2874. static void _mdns_handle_system_event(esp_event_base_t event_base,
  2875. int32_t event_id, esp_netif_t* interface)
  2876. {
  2877. if (!_mdns_server) {
  2878. return;
  2879. }
  2880. esp_netif_dhcp_status_t dcst;
  2881. if (event_base == WIFI_EVENT) {
  2882. switch(event_id) {
  2883. case WIFI_EVENT_STA_CONNECTED:
  2884. if (!esp_netif_dhcpc_get_status(_mdns_get_esp_netif(MDNS_IF_STA), &dcst)) {
  2885. if (dcst == ESP_NETIF_DHCP_STOPPED) {
  2886. _mdns_enable_pcb(MDNS_IF_STA, MDNS_IP_PROTOCOL_V4);
  2887. }
  2888. }
  2889. break;
  2890. case WIFI_EVENT_STA_DISCONNECTED:
  2891. _mdns_disable_pcb(MDNS_IF_STA, MDNS_IP_PROTOCOL_V4);
  2892. _mdns_disable_pcb(MDNS_IF_STA, MDNS_IP_PROTOCOL_V6);
  2893. break;
  2894. case WIFI_EVENT_AP_START:
  2895. _mdns_enable_pcb(MDNS_IF_AP, MDNS_IP_PROTOCOL_V4);
  2896. break;
  2897. case WIFI_EVENT_AP_STOP:
  2898. _mdns_disable_pcb(MDNS_IF_AP, MDNS_IP_PROTOCOL_V4);
  2899. _mdns_disable_pcb(MDNS_IF_AP, MDNS_IP_PROTOCOL_V6);
  2900. break;
  2901. default:
  2902. break;
  2903. }
  2904. }
  2905. #if CONFIG_ETH_ENABLED
  2906. else if (event_base == ETH_EVENT) {
  2907. switch (event_id) {
  2908. case ETHERNET_EVENT_CONNECTED:
  2909. if (!esp_netif_dhcpc_get_status(_mdns_get_esp_netif(MDNS_IF_ETH), &dcst)) {
  2910. if (dcst == ESP_NETIF_DHCP_STOPPED) {
  2911. _mdns_enable_pcb(MDNS_IF_ETH, MDNS_IP_PROTOCOL_V4);
  2912. }
  2913. }
  2914. break;
  2915. case ETHERNET_EVENT_DISCONNECTED:
  2916. _mdns_disable_pcb(MDNS_IF_ETH, MDNS_IP_PROTOCOL_V4);
  2917. _mdns_disable_pcb(MDNS_IF_ETH, MDNS_IP_PROTOCOL_V6);
  2918. break;
  2919. default:
  2920. break;
  2921. }
  2922. }
  2923. #endif
  2924. else if (event_base == IP_EVENT) {
  2925. switch (event_id) {
  2926. case IP_EVENT_STA_GOT_IP:
  2927. _mdns_enable_pcb(MDNS_IF_STA, MDNS_IP_PROTOCOL_V4);
  2928. _mdns_announce_pcb(MDNS_IF_STA, MDNS_IP_PROTOCOL_V6, NULL, 0, true);
  2929. break;
  2930. #if CONFIG_ETH_ENABLED
  2931. case IP_EVENT_ETH_GOT_IP:
  2932. _mdns_enable_pcb(MDNS_IF_ETH, MDNS_IP_PROTOCOL_V4);
  2933. break;
  2934. #endif
  2935. case IP_EVENT_GOT_IP6:
  2936. {
  2937. mdns_if_t mdns_if = _mdns_get_if_from_esp_netif(interface);
  2938. if (mdns_if != MDNS_IF_MAX) {
  2939. _mdns_enable_pcb(mdns_if, MDNS_IP_PROTOCOL_V6);
  2940. _mdns_announce_pcb(mdns_if, MDNS_IP_PROTOCOL_V4, NULL, 0, true);
  2941. }
  2942. }
  2943. break;
  2944. default:
  2945. break;
  2946. }
  2947. }
  2948. }
  2949. /*
  2950. * MDNS Search
  2951. * */
  2952. /**
  2953. * @brief Free search structure (except the results)
  2954. */
  2955. static void _mdns_search_free(mdns_search_once_t * search)
  2956. {
  2957. free(search->instance);
  2958. free(search->service);
  2959. free(search->proto);
  2960. vSemaphoreDelete(search->done_semaphore);
  2961. free(search);
  2962. }
  2963. /**
  2964. * @brief Allocate new search structure
  2965. */
  2966. static mdns_search_once_t * _mdns_search_init(const char * name, const char * service, const char * proto, uint16_t type, uint32_t timeout, uint8_t max_results)
  2967. {
  2968. mdns_search_once_t * search = (mdns_search_once_t *)malloc(sizeof(mdns_search_once_t));
  2969. if (!search) {
  2970. HOOK_MALLOC_FAILED;
  2971. return NULL;
  2972. }
  2973. memset(search, 0, sizeof(mdns_search_once_t));
  2974. search->done_semaphore = xSemaphoreCreateBinary();
  2975. if (!search->done_semaphore) {
  2976. free(search);
  2977. return NULL;
  2978. }
  2979. if (!_str_null_or_empty(name)) {
  2980. search->instance = strndup(name, MDNS_NAME_BUF_LEN-1);
  2981. if (!search->instance) {
  2982. _mdns_search_free(search);
  2983. return NULL;
  2984. }
  2985. }
  2986. if (!_str_null_or_empty(service)) {
  2987. search->service = strndup(service, MDNS_NAME_BUF_LEN-1);
  2988. if (!search->service) {
  2989. _mdns_search_free(search);
  2990. return NULL;
  2991. }
  2992. }
  2993. if (!_str_null_or_empty(proto)) {
  2994. search->proto = strndup(proto, MDNS_NAME_BUF_LEN-1);
  2995. if (!search->proto) {
  2996. _mdns_search_free(search);
  2997. return NULL;
  2998. }
  2999. }
  3000. search->type = type;
  3001. search->timeout = timeout;
  3002. search->num_results = 0;
  3003. search->max_results = max_results;
  3004. search->result = NULL;
  3005. search->state = SEARCH_INIT;
  3006. search->sent_at = 0;
  3007. search->started_at = xTaskGetTickCount() * portTICK_PERIOD_MS;
  3008. search->next = NULL;
  3009. return search;
  3010. }
  3011. /**
  3012. * @brief Mark search as finished and remove it from search chain
  3013. */
  3014. static void _mdns_search_finish(mdns_search_once_t * search)
  3015. {
  3016. search->state = SEARCH_OFF;
  3017. queueDetach(mdns_search_once_t, _mdns_server->search_once, search);
  3018. xSemaphoreGive(search->done_semaphore);
  3019. }
  3020. /**
  3021. * @brief Add new search to the search chain
  3022. */
  3023. static void _mdns_search_add(mdns_search_once_t * search)
  3024. {
  3025. search->next = _mdns_server->search_once;
  3026. _mdns_server->search_once = search;
  3027. }
  3028. /**
  3029. * @brief Called from parser to finish any searches that have reached maximum results
  3030. */
  3031. static void _mdns_search_finish_done(void)
  3032. {
  3033. mdns_search_once_t * search = _mdns_server->search_once;
  3034. mdns_search_once_t * s = NULL;
  3035. while (search) {
  3036. s = search;
  3037. search = search->next;
  3038. if (s->max_results && s->num_results >= s->max_results) {
  3039. _mdns_search_finish(s);
  3040. }
  3041. }
  3042. }
  3043. /**
  3044. * @brief Create linked IP (copy) from parsed one
  3045. */
  3046. static mdns_ip_addr_t * _mdns_result_addr_create_ip(esp_ip_addr_t * ip)
  3047. {
  3048. mdns_ip_addr_t * a = (mdns_ip_addr_t *)malloc(sizeof(mdns_ip_addr_t));
  3049. if (!a) {
  3050. HOOK_MALLOC_FAILED;
  3051. return NULL;
  3052. }
  3053. memset(a, 0 , sizeof(mdns_ip_addr_t));
  3054. a->addr.type = ip->type;
  3055. if (ip->type == IPADDR_TYPE_V6) {
  3056. memcpy(a->addr.u_addr.ip6.addr, ip->u_addr.ip6.addr, 16);
  3057. } else {
  3058. a->addr.u_addr.ip4.addr = ip->u_addr.ip4.addr;
  3059. }
  3060. return a;
  3061. }
  3062. /**
  3063. * @brief Chain new IP to search result
  3064. */
  3065. static void _mdns_result_add_ip(mdns_result_t * r, esp_ip_addr_t * ip)
  3066. {
  3067. mdns_ip_addr_t * a = r->addr;
  3068. while (a) {
  3069. if (a->addr.type == ip->type) {
  3070. if (a->addr.type == IPADDR_TYPE_V4 && a->addr.u_addr.ip4.addr == ip->u_addr.ip4.addr) {
  3071. return;
  3072. }
  3073. if (a->addr.type == IPADDR_TYPE_V6 && !memcmp(a->addr.u_addr.ip6.addr, ip->u_addr.ip6.addr, 16)) {
  3074. return;
  3075. }
  3076. }
  3077. a = a->next;
  3078. }
  3079. a = _mdns_result_addr_create_ip(ip);
  3080. if (!a) {
  3081. return;
  3082. }
  3083. a->next = r->addr;
  3084. r->addr = a;
  3085. }
  3086. /**
  3087. * @brief Called from parser to add A/AAAA data to search result
  3088. */
  3089. static void _mdns_search_result_add_ip(mdns_search_once_t * search, const char * hostname, esp_ip_addr_t * ip, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  3090. {
  3091. mdns_result_t * r = NULL;
  3092. mdns_ip_addr_t * a = NULL;
  3093. if ((search->type == MDNS_TYPE_A && ip->type == IPADDR_TYPE_V4)
  3094. || (search->type == MDNS_TYPE_AAAA && ip->type == IPADDR_TYPE_V6)
  3095. || search->type == MDNS_TYPE_ANY) {
  3096. r = search->result;
  3097. while (r) {
  3098. if (r->tcpip_if == tcpip_if && r->ip_protocol == ip_protocol) {
  3099. _mdns_result_add_ip(r, ip);
  3100. return;
  3101. }
  3102. r = r->next;
  3103. }
  3104. if (!search->max_results || search->num_results < search->max_results) {
  3105. r = (mdns_result_t *)malloc(sizeof(mdns_result_t));
  3106. if (!r) {
  3107. HOOK_MALLOC_FAILED;
  3108. return;
  3109. }
  3110. memset(r, 0 , sizeof(mdns_result_t));
  3111. a = _mdns_result_addr_create_ip(ip);
  3112. if (!a) {
  3113. free(r);
  3114. return;
  3115. }
  3116. a->next = r->addr;
  3117. r->addr = a;
  3118. r->tcpip_if = tcpip_if;
  3119. r->ip_protocol = ip_protocol;
  3120. r->next = search->result;
  3121. search->result = r;
  3122. search->num_results++;
  3123. }
  3124. } else if (search->type == MDNS_TYPE_PTR) {
  3125. r = search->result;
  3126. while (r) {
  3127. if (r->tcpip_if == tcpip_if && r->ip_protocol == ip_protocol && !_str_null_or_empty(r->hostname) && !strcasecmp(hostname, r->hostname)) {
  3128. _mdns_result_add_ip(r, ip);
  3129. break;
  3130. }
  3131. r = r->next;
  3132. }
  3133. }
  3134. }
  3135. /**
  3136. * @brief Called from parser to add PTR data to search result
  3137. */
  3138. static mdns_result_t * _mdns_search_result_add_ptr(mdns_search_once_t * search, const char * instance, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  3139. {
  3140. mdns_result_t * r = search->result;
  3141. while (r) {
  3142. if (r->tcpip_if == tcpip_if && r->ip_protocol == ip_protocol && !_str_null_or_empty(r->instance_name) && !strcasecmp(instance, r->instance_name)) {
  3143. return r;
  3144. }
  3145. r = r->next;
  3146. }
  3147. if (!search->max_results || search->num_results < search->max_results) {
  3148. r = (mdns_result_t *)malloc(sizeof(mdns_result_t));
  3149. if (!r) {
  3150. HOOK_MALLOC_FAILED;
  3151. return NULL;
  3152. }
  3153. memset(r, 0 , sizeof(mdns_result_t));
  3154. r->instance_name = strdup(instance);
  3155. if (!r->instance_name) {
  3156. free(r);
  3157. return NULL;
  3158. }
  3159. r->tcpip_if = tcpip_if;
  3160. r->ip_protocol = ip_protocol;
  3161. r->next = search->result;
  3162. search->result = r;
  3163. search->num_results++;
  3164. return r;
  3165. }
  3166. return NULL;
  3167. }
  3168. /**
  3169. * @brief Called from parser to add SRV data to search result
  3170. */
  3171. static void _mdns_search_result_add_srv(mdns_search_once_t * search, const char * hostname, uint16_t port, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  3172. {
  3173. mdns_result_t * r = search->result;
  3174. while (r) {
  3175. if (r->tcpip_if == tcpip_if && r->ip_protocol == ip_protocol && !_str_null_or_empty(r->hostname) && !strcasecmp(hostname, r->hostname)) {
  3176. return;
  3177. }
  3178. r = r->next;
  3179. }
  3180. if (!search->max_results || search->num_results < search->max_results) {
  3181. r = (mdns_result_t *)malloc(sizeof(mdns_result_t));
  3182. if (!r) {
  3183. HOOK_MALLOC_FAILED;
  3184. return;
  3185. }
  3186. memset(r, 0 , sizeof(mdns_result_t));
  3187. r->hostname = strdup(hostname);
  3188. if (!r->hostname) {
  3189. free(r);
  3190. return;
  3191. }
  3192. r->port = port;
  3193. r->tcpip_if = tcpip_if;
  3194. r->ip_protocol = ip_protocol;
  3195. r->next = search->result;
  3196. search->result = r;
  3197. search->num_results++;
  3198. }
  3199. }
  3200. /**
  3201. * @brief Called from parser to add TXT data to search result
  3202. */
  3203. static void _mdns_search_result_add_txt(mdns_search_once_t * search, mdns_txt_item_t * txt, size_t txt_count, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  3204. {
  3205. int i;
  3206. mdns_result_t * r = search->result;
  3207. while (r) {
  3208. if (r->tcpip_if == tcpip_if && r->ip_protocol == ip_protocol) {
  3209. if (r->txt) {
  3210. goto free_txt;
  3211. }
  3212. r->txt = txt;
  3213. r->txt_count = txt_count;
  3214. return;
  3215. }
  3216. r = r->next;
  3217. }
  3218. if (!search->max_results || search->num_results < search->max_results) {
  3219. r = (mdns_result_t *)malloc(sizeof(mdns_result_t));
  3220. if (!r) {
  3221. HOOK_MALLOC_FAILED;
  3222. goto free_txt;
  3223. }
  3224. memset(r, 0 , sizeof(mdns_result_t));
  3225. r->txt = txt;
  3226. r->txt_count = txt_count;
  3227. r->tcpip_if = tcpip_if;
  3228. r->ip_protocol = ip_protocol;
  3229. r->next = search->result;
  3230. search->result = r;
  3231. search->num_results++;
  3232. }
  3233. return;
  3234. free_txt:
  3235. for (i=0; i<txt_count; i++) {
  3236. free((char *)(txt[i].key));
  3237. free((char *)(txt[i].value));
  3238. }
  3239. free(txt);
  3240. }
  3241. /**
  3242. * @brief Called from packet parser to find matching running search
  3243. */
  3244. static mdns_search_once_t * _mdns_search_find_from(mdns_search_once_t * s, mdns_name_t * name, uint16_t type, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  3245. {
  3246. mdns_result_t * r = NULL;
  3247. while (s) {
  3248. if (s->state == SEARCH_OFF) {
  3249. s = s->next;
  3250. continue;
  3251. }
  3252. if (type == MDNS_TYPE_A || type == MDNS_TYPE_AAAA) {
  3253. if ((s->type == MDNS_TYPE_ANY && s->service != NULL)
  3254. || (s->type != MDNS_TYPE_ANY && s->type != type && s->type != MDNS_TYPE_PTR))
  3255. {
  3256. s = s->next;
  3257. continue;
  3258. }
  3259. if (s->type != MDNS_TYPE_PTR) {
  3260. if (!strcasecmp(name->host, s->instance)) {
  3261. return s;
  3262. }
  3263. s = s->next;
  3264. continue;
  3265. }
  3266. r = s->result;
  3267. while (r) {
  3268. if (r->tcpip_if == tcpip_if && r->ip_protocol == ip_protocol && !_str_null_or_empty(r->hostname) && !strcasecmp(name->host, r->hostname)) {
  3269. return s;
  3270. }
  3271. r = r->next;
  3272. }
  3273. s = s->next;
  3274. continue;
  3275. }
  3276. if (type == MDNS_TYPE_SRV || type == MDNS_TYPE_TXT) {
  3277. if ((s->type == MDNS_TYPE_ANY && s->service == NULL)
  3278. || (s->type != MDNS_TYPE_ANY && s->type != type && s->type != MDNS_TYPE_PTR))
  3279. {
  3280. s = s->next;
  3281. continue;
  3282. }
  3283. if (strcasecmp(name->service, s->service)
  3284. || strcasecmp(name->proto, s->proto))
  3285. {
  3286. s = s->next;
  3287. continue;
  3288. }
  3289. if (s->type != MDNS_TYPE_PTR) {
  3290. if (!strcasecmp(name->host, s->instance)) {
  3291. return s;
  3292. }
  3293. s = s->next;
  3294. continue;
  3295. }
  3296. return s;
  3297. }
  3298. if (type == MDNS_TYPE_PTR && type == s->type && !strcasecmp(name->service, s->service) && !strcasecmp(name->proto, s->proto)) {
  3299. return s;
  3300. }
  3301. s = s->next;
  3302. }
  3303. return NULL;
  3304. }
  3305. /**
  3306. * @brief Create search packet for particular interface
  3307. */
  3308. static mdns_tx_packet_t * _mdns_create_search_packet(mdns_search_once_t * search, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  3309. {
  3310. mdns_result_t * r = NULL;
  3311. mdns_tx_packet_t * packet = _mdns_alloc_packet_default(tcpip_if, ip_protocol);
  3312. if (!packet) {
  3313. return NULL;
  3314. }
  3315. mdns_out_question_t * q = (mdns_out_question_t *)malloc(sizeof(mdns_out_question_t));
  3316. if (!q) {
  3317. HOOK_MALLOC_FAILED;
  3318. _mdns_free_tx_packet(packet);
  3319. return NULL;
  3320. }
  3321. q->next = NULL;
  3322. q->unicast = search->type != MDNS_TYPE_PTR;
  3323. q->type = search->type;
  3324. q->host = search->instance;
  3325. q->service = search->service;
  3326. q->proto = search->proto;
  3327. q->domain = MDNS_DEFAULT_DOMAIN;
  3328. queueToEnd(mdns_out_question_t, packet->questions, q);
  3329. if (search->type == MDNS_TYPE_PTR) {
  3330. r = search->result;
  3331. while (r) {
  3332. //full record on the same interface is available
  3333. if (r->tcpip_if != tcpip_if || r->ip_protocol != ip_protocol || r->instance_name == NULL || r->hostname == NULL || r->addr == NULL) {
  3334. r = r->next;
  3335. continue;
  3336. }
  3337. mdns_out_answer_t * a = (mdns_out_answer_t *)malloc(sizeof(mdns_out_answer_t));
  3338. if (!a) {
  3339. HOOK_MALLOC_FAILED;
  3340. _mdns_free_tx_packet(packet);
  3341. return NULL;
  3342. }
  3343. a->type = MDNS_TYPE_PTR;
  3344. a->service = NULL;
  3345. a->custom_instance = r->instance_name;
  3346. a->custom_service = search->service;
  3347. a->custom_proto = search->proto;
  3348. a->bye = false;
  3349. a->flush = false;
  3350. a->next = NULL;
  3351. queueToEnd(mdns_out_answer_t, packet->answers, a);
  3352. r = r->next;
  3353. }
  3354. }
  3355. return packet;
  3356. }
  3357. /**
  3358. * @brief Send search packet to particular interface
  3359. */
  3360. static void _mdns_search_send_pcb(mdns_search_once_t * search, mdns_if_t tcpip_if, mdns_ip_protocol_t ip_protocol)
  3361. {
  3362. mdns_tx_packet_t * packet = NULL;
  3363. if (_mdns_server->interfaces[tcpip_if].pcbs[ip_protocol].pcb && _mdns_server->interfaces[tcpip_if].pcbs[ip_protocol].state > PCB_INIT) {
  3364. packet = _mdns_create_search_packet(search, tcpip_if, ip_protocol);
  3365. if (!packet) {
  3366. return;
  3367. }
  3368. _mdns_dispatch_tx_packet(packet);
  3369. _mdns_free_tx_packet(packet);
  3370. }
  3371. }
  3372. /**
  3373. * @brief Send search packet to all available interfaces
  3374. */
  3375. static void _mdns_search_send(mdns_search_once_t * search)
  3376. {
  3377. mdns_search_once_t* queue = _mdns_server->search_once;
  3378. bool found = false;
  3379. // looking for this search in active searches
  3380. while (queue) {
  3381. if (queue == search) {
  3382. found = true;
  3383. break;
  3384. }
  3385. queue = queue->next;
  3386. }
  3387. if (!found) {
  3388. // no longer active -> skip sending this search
  3389. return;
  3390. }
  3391. uint8_t i, j;
  3392. for (i=0; i<MDNS_IF_MAX; i++) {
  3393. for (j=0; j<MDNS_IP_PROTOCOL_MAX; j++) {
  3394. _mdns_search_send_pcb(search, (mdns_if_t)i, (mdns_ip_protocol_t)j);
  3395. }
  3396. }
  3397. }
  3398. static void _mdns_tx_handle_packet(mdns_tx_packet_t * p)
  3399. {
  3400. mdns_tx_packet_t * a = NULL;
  3401. mdns_out_question_t * q = NULL;
  3402. mdns_pcb_t * pcb = &_mdns_server->interfaces[p->tcpip_if].pcbs[p->ip_protocol];
  3403. uint32_t send_after = 1000;
  3404. if (pcb->state == PCB_OFF) {
  3405. _mdns_free_tx_packet(p);
  3406. return;
  3407. }
  3408. _mdns_dispatch_tx_packet(p);
  3409. switch(pcb->state) {
  3410. case PCB_PROBE_1:
  3411. q = p->questions;
  3412. while (q) {
  3413. q->unicast = false;
  3414. q = q->next;
  3415. }
  3416. //fallthrough
  3417. case PCB_PROBE_2:
  3418. _mdns_schedule_tx_packet(p, 250);
  3419. pcb->state = (mdns_pcb_state_t)((uint8_t)(pcb->state) + 1);
  3420. break;
  3421. case PCB_PROBE_3:
  3422. a = _mdns_create_announce_from_probe(p);
  3423. if (!a) {
  3424. _mdns_schedule_tx_packet(p, 250);
  3425. break;
  3426. }
  3427. pcb->probe_running = false;
  3428. pcb->probe_ip = false;
  3429. pcb->probe_services_len = 0;
  3430. pcb->failed_probes = 0;
  3431. free(pcb->probe_services);
  3432. pcb->probe_services = NULL;
  3433. _mdns_free_tx_packet(p);
  3434. p = a;
  3435. send_after = 250;
  3436. //fallthrough
  3437. case PCB_ANNOUNCE_1:
  3438. //fallthrough
  3439. case PCB_ANNOUNCE_2:
  3440. _mdns_schedule_tx_packet(p, send_after);
  3441. pcb->state = (mdns_pcb_state_t)((uint8_t)(pcb->state) + 1);
  3442. break;
  3443. case PCB_ANNOUNCE_3:
  3444. pcb->state = PCB_RUNNING;
  3445. _mdns_free_tx_packet(p);
  3446. break;
  3447. default:
  3448. _mdns_free_tx_packet(p);
  3449. break;
  3450. }
  3451. }
  3452. /**
  3453. * @brief Free action data
  3454. */
  3455. static void _mdns_free_action(mdns_action_t * action)
  3456. {
  3457. switch(action->type) {
  3458. case ACTION_HOSTNAME_SET:
  3459. free(action->data.hostname);
  3460. break;
  3461. case ACTION_INSTANCE_SET:
  3462. free(action->data.instance);
  3463. break;
  3464. case ACTION_SERVICE_ADD:
  3465. _mdns_free_service(action->data.srv_add.service->service);
  3466. free(action->data.srv_add.service);
  3467. break;
  3468. case ACTION_SERVICE_INSTANCE_SET:
  3469. free(action->data.srv_instance.instance);
  3470. break;
  3471. case ACTION_SERVICE_TXT_REPLACE:
  3472. _mdns_free_linked_txt(action->data.srv_txt_replace.txt);
  3473. break;
  3474. case ACTION_SERVICE_TXT_SET:
  3475. free(action->data.srv_txt_set.key);
  3476. free(action->data.srv_txt_set.value);
  3477. break;
  3478. case ACTION_SERVICE_TXT_DEL:
  3479. free(action->data.srv_txt_del.key);
  3480. break;
  3481. case ACTION_SEARCH_ADD:
  3482. //fallthrough
  3483. case ACTION_SEARCH_SEND:
  3484. //fallthrough
  3485. case ACTION_SEARCH_END:
  3486. _mdns_search_free(action->data.search_add.search);
  3487. break;
  3488. case ACTION_TX_HANDLE:
  3489. _mdns_free_tx_packet(action->data.tx_handle.packet);
  3490. break;
  3491. case ACTION_RX_HANDLE:
  3492. pbuf_free(action->data.rx_handle.packet->pb);
  3493. free(action->data.rx_handle.packet);
  3494. break;
  3495. default:
  3496. break;
  3497. }
  3498. free(action);
  3499. }
  3500. /**
  3501. * @brief Called from service thread to execute given action
  3502. */
  3503. static void _mdns_execute_action(mdns_action_t * action)
  3504. {
  3505. mdns_srv_item_t * a = NULL;
  3506. mdns_service_t * service;
  3507. char * key;
  3508. char * value;
  3509. mdns_txt_linked_item_t * txt, * t;
  3510. switch(action->type) {
  3511. case ACTION_SYSTEM_EVENT:
  3512. _mdns_handle_system_event(action->data.sys_event.event_base,
  3513. action->data.sys_event.event_id, action->data.sys_event.interface);
  3514. break;
  3515. case ACTION_HOSTNAME_SET:
  3516. _mdns_send_bye_all_pcbs_no_instance(true);
  3517. free((char*)_mdns_server->hostname);
  3518. _mdns_server->hostname = action->data.hostname;
  3519. _mdns_restart_all_pcbs();
  3520. break;
  3521. case ACTION_INSTANCE_SET:
  3522. _mdns_send_bye_all_pcbs_no_instance(false);
  3523. free((char*)_mdns_server->instance);
  3524. _mdns_server->instance = action->data.instance;
  3525. _mdns_restart_all_pcbs_no_instance();
  3526. break;
  3527. case ACTION_SERVICE_ADD:
  3528. action->data.srv_add.service->next = _mdns_server->services;
  3529. _mdns_server->services = action->data.srv_add.service;
  3530. _mdns_probe_all_pcbs(&action->data.srv_add.service, 1, false, false);
  3531. break;
  3532. case ACTION_SERVICE_INSTANCE_SET:
  3533. if (action->data.srv_instance.service->service->instance) {
  3534. _mdns_send_bye(&action->data.srv_instance.service, 1, false);
  3535. free((char*)action->data.srv_instance.service->service->instance);
  3536. }
  3537. action->data.srv_instance.service->service->instance = action->data.srv_instance.instance;
  3538. _mdns_probe_all_pcbs(&action->data.srv_instance.service, 1, false, false);
  3539. break;
  3540. case ACTION_SERVICE_PORT_SET:
  3541. action->data.srv_port.service->service->port = action->data.srv_port.port;
  3542. _mdns_announce_all_pcbs(&action->data.srv_port.service, 1, true);
  3543. break;
  3544. case ACTION_SERVICE_TXT_REPLACE:
  3545. service = action->data.srv_txt_replace.service->service;
  3546. txt = service->txt;
  3547. service->txt = NULL;
  3548. _mdns_free_linked_txt(txt);
  3549. service->txt = action->data.srv_txt_replace.txt;
  3550. _mdns_announce_all_pcbs(&action->data.srv_txt_replace.service, 1, false);
  3551. break;
  3552. case ACTION_SERVICE_TXT_SET:
  3553. service = action->data.srv_txt_set.service->service;
  3554. key = action->data.srv_txt_set.key;
  3555. value = action->data.srv_txt_set.value;
  3556. txt = service->txt;
  3557. while (txt) {
  3558. if (strcmp(txt->key, key) == 0) {
  3559. free((char *)txt->value);
  3560. free(key);
  3561. txt->value = value;
  3562. break;
  3563. }
  3564. txt = txt->next;
  3565. }
  3566. if (!txt) {
  3567. txt = (mdns_txt_linked_item_t *)malloc(sizeof(mdns_txt_linked_item_t));
  3568. if (!txt) {
  3569. HOOK_MALLOC_FAILED;
  3570. _mdns_free_action(action);
  3571. return;
  3572. }
  3573. txt->key = key;
  3574. txt->value = value;
  3575. txt->next = service->txt;
  3576. service->txt = txt;
  3577. }
  3578. _mdns_announce_all_pcbs(&action->data.srv_txt_set.service, 1, false);
  3579. break;
  3580. case ACTION_SERVICE_TXT_DEL:
  3581. service = action->data.srv_txt_del.service->service;
  3582. key = action->data.srv_txt_del.key;
  3583. txt = service->txt;
  3584. if (!txt) {
  3585. break;
  3586. }
  3587. if (strcmp(txt->key, key) == 0) {
  3588. service->txt = txt->next;
  3589. free((char *)txt->key);
  3590. free((char *)txt->value);
  3591. free(txt);
  3592. } else {
  3593. while (txt->next) {
  3594. if (strcmp(txt->next->key, key) == 0) {
  3595. t = txt->next;
  3596. txt->next = t->next;
  3597. free((char *)t->key);
  3598. free((char *)t->value);
  3599. free(t);
  3600. break;
  3601. } else {
  3602. txt = txt->next;
  3603. }
  3604. }
  3605. }
  3606. free(key);
  3607. _mdns_announce_all_pcbs(&action->data.srv_txt_set.service, 1, false);
  3608. break;
  3609. case ACTION_SERVICE_DEL:
  3610. a = _mdns_server->services;
  3611. if (action->data.srv_del.service) {
  3612. if (_mdns_server->services == action->data.srv_del.service) {
  3613. _mdns_server->services = a->next;
  3614. _mdns_send_bye(&a, 1, false);
  3615. _mdns_remove_scheduled_service_packets(a->service);
  3616. _mdns_free_service(a->service);
  3617. free(a);
  3618. } else {
  3619. while (a->next && a->next != action->data.srv_del.service) {
  3620. a = a->next;
  3621. }
  3622. if (a->next == action->data.srv_del.service) {
  3623. mdns_srv_item_t * b = a->next;
  3624. a->next = a->next->next;
  3625. _mdns_send_bye(&b, 1, false);
  3626. _mdns_remove_scheduled_service_packets(b->service);
  3627. _mdns_free_service(b->service);
  3628. free(b);
  3629. }
  3630. }
  3631. }
  3632. break;
  3633. case ACTION_SERVICES_CLEAR:
  3634. _mdns_send_final_bye(false);
  3635. a = _mdns_server->services;
  3636. _mdns_server->services = NULL;
  3637. while (a) {
  3638. mdns_srv_item_t * s = a;
  3639. a = a->next;
  3640. _mdns_remove_scheduled_service_packets(s->service);
  3641. _mdns_free_service(s->service);
  3642. free(s);
  3643. }
  3644. break;
  3645. case ACTION_SEARCH_ADD:
  3646. _mdns_search_add(action->data.search_add.search);
  3647. break;
  3648. case ACTION_SEARCH_SEND:
  3649. _mdns_search_send(action->data.search_add.search);
  3650. break;
  3651. case ACTION_SEARCH_END:
  3652. _mdns_search_finish(action->data.search_add.search);
  3653. break;
  3654. case ACTION_TX_HANDLE:
  3655. {
  3656. mdns_tx_packet_t * p = _mdns_server->tx_queue_head;
  3657. // packet to be handled should be at tx head, but must be consistent with the one pushed to action queue
  3658. if (p && p==action->data.tx_handle.packet && p->queued) {
  3659. p->queued = false; // clearing, as the packet might be reused (pushed and transmitted again)
  3660. _mdns_server->tx_queue_head = p->next;
  3661. _mdns_tx_handle_packet(p);
  3662. } else {
  3663. ESP_LOGD(TAG, "Skipping transmit of an unexpected packet!");
  3664. }
  3665. }
  3666. break;
  3667. case ACTION_RX_HANDLE:
  3668. mdns_parse_packet(action->data.rx_handle.packet);
  3669. pbuf_free(action->data.rx_handle.packet->pb);
  3670. free(action->data.rx_handle.packet);
  3671. break;
  3672. default:
  3673. break;
  3674. }
  3675. free(action);
  3676. }
  3677. /**
  3678. * @brief Queue search action
  3679. */
  3680. static esp_err_t _mdns_send_search_action(mdns_action_type_t type, mdns_search_once_t * search)
  3681. {
  3682. mdns_action_t * action = NULL;
  3683. action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  3684. if (!action) {
  3685. HOOK_MALLOC_FAILED;
  3686. return ESP_ERR_NO_MEM;
  3687. }
  3688. action->type = type;
  3689. action->data.search_add.search = search;
  3690. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  3691. free(action);
  3692. return ESP_ERR_NO_MEM;
  3693. }
  3694. return ESP_OK;
  3695. }
  3696. /**
  3697. * @brief Called from timer task to run mDNS responder
  3698. *
  3699. * periodically checks first unqueued packet (from tx head).
  3700. * if it is scheduled to be transmitted, then pushes the packet to action queue to be handled.
  3701. *
  3702. */
  3703. static void _mdns_scheduler_run(void)
  3704. {
  3705. MDNS_SERVICE_LOCK();
  3706. mdns_tx_packet_t * p = _mdns_server->tx_queue_head;
  3707. mdns_action_t * action = NULL;
  3708. // find first unqueued packet
  3709. while (p && p->queued) {
  3710. p = p->next;
  3711. }
  3712. if (!p) {
  3713. MDNS_SERVICE_UNLOCK();
  3714. return;
  3715. }
  3716. if ((int32_t)(p->send_at - (xTaskGetTickCount() * portTICK_PERIOD_MS)) < 0) {
  3717. action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  3718. if (action) {
  3719. action->type = ACTION_TX_HANDLE;
  3720. action->data.tx_handle.packet = p;
  3721. p->queued = true;
  3722. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  3723. free(action);
  3724. p->queued = false;
  3725. }
  3726. } else {
  3727. HOOK_MALLOC_FAILED;
  3728. // continue
  3729. }
  3730. }
  3731. MDNS_SERVICE_UNLOCK();
  3732. }
  3733. /**
  3734. * @brief Called from timer task to run active searches
  3735. */
  3736. static void _mdns_search_run(void)
  3737. {
  3738. MDNS_SERVICE_LOCK();
  3739. mdns_search_once_t * s = _mdns_server->search_once;
  3740. uint32_t now = xTaskGetTickCount() * portTICK_PERIOD_MS;
  3741. if (!s) {
  3742. MDNS_SERVICE_UNLOCK();
  3743. return;
  3744. }
  3745. while (s) {
  3746. if (s->state != SEARCH_OFF) {
  3747. if (now > (s->started_at + s->timeout)) {
  3748. s->state = SEARCH_OFF;
  3749. if (_mdns_send_search_action(ACTION_SEARCH_END, s) != ESP_OK) {
  3750. s->state = SEARCH_RUNNING;
  3751. }
  3752. } else if (s->state == SEARCH_INIT || (now - s->sent_at) > 1000) {
  3753. s->state = SEARCH_RUNNING;
  3754. s->sent_at = now;
  3755. if (_mdns_send_search_action(ACTION_SEARCH_SEND, s) != ESP_OK) {
  3756. s->sent_at -= 1000;
  3757. }
  3758. }
  3759. }
  3760. s = s->next;
  3761. }
  3762. MDNS_SERVICE_UNLOCK();
  3763. }
  3764. /**
  3765. * @brief the main MDNS service task. Packets are received and parsed here
  3766. */
  3767. static void _mdns_service_task(void *pvParameters)
  3768. {
  3769. mdns_action_t * a = NULL;
  3770. for (;;) {
  3771. if (_mdns_server && _mdns_server->action_queue) {
  3772. if (xQueueReceive(_mdns_server->action_queue, &a, portMAX_DELAY) == pdTRUE) {
  3773. if (a->type == ACTION_TASK_STOP) {
  3774. break;
  3775. }
  3776. MDNS_SERVICE_LOCK();
  3777. _mdns_execute_action(a);
  3778. MDNS_SERVICE_UNLOCK();
  3779. }
  3780. } else {
  3781. vTaskDelay(500 * portTICK_PERIOD_MS);
  3782. }
  3783. }
  3784. _mdns_service_task_handle = NULL;
  3785. vTaskDelete(NULL);
  3786. }
  3787. static void _mdns_timer_cb(void * arg)
  3788. {
  3789. _mdns_scheduler_run();
  3790. _mdns_search_run();
  3791. }
  3792. static esp_err_t _mdns_start_timer(void){
  3793. esp_timer_create_args_t timer_conf = {
  3794. .callback = _mdns_timer_cb,
  3795. .arg = NULL,
  3796. .dispatch_method = ESP_TIMER_TASK,
  3797. .name = "mdns_timer"
  3798. };
  3799. esp_err_t err = esp_timer_create(&timer_conf, &(_mdns_server->timer_handle));
  3800. if (err) {
  3801. return err;
  3802. }
  3803. return esp_timer_start_periodic(_mdns_server->timer_handle, MDNS_TIMER_PERIOD_US);
  3804. }
  3805. static esp_err_t _mdns_stop_timer(void){
  3806. esp_err_t err = ESP_OK;
  3807. if (_mdns_server->timer_handle) {
  3808. err = esp_timer_stop(_mdns_server->timer_handle);
  3809. if (err) {
  3810. return err;
  3811. }
  3812. err = esp_timer_delete(_mdns_server->timer_handle);
  3813. }
  3814. return err;
  3815. }
  3816. /**
  3817. * @brief Start the service thread if not running
  3818. *
  3819. * @return
  3820. * - ESP_OK on success
  3821. * - ESP_FAIL on error
  3822. */
  3823. static esp_err_t _mdns_service_task_start(void)
  3824. {
  3825. if (!_mdns_service_semaphore) {
  3826. _mdns_service_semaphore = xSemaphoreCreateMutex();
  3827. if (!_mdns_service_semaphore) {
  3828. return ESP_FAIL;
  3829. }
  3830. }
  3831. MDNS_SERVICE_LOCK();
  3832. if (_mdns_start_timer()) {
  3833. MDNS_SERVICE_UNLOCK();
  3834. return ESP_FAIL;
  3835. }
  3836. if (!_mdns_service_task_handle) {
  3837. xTaskCreatePinnedToCore(_mdns_service_task, "mdns", MDNS_SERVICE_STACK_DEPTH, NULL, MDNS_TASK_PRIORITY,
  3838. (TaskHandle_t * const)(&_mdns_service_task_handle), MDNS_TASK_AFFINITY);
  3839. if (!_mdns_service_task_handle) {
  3840. _mdns_stop_timer();
  3841. MDNS_SERVICE_UNLOCK();
  3842. vSemaphoreDelete(_mdns_service_semaphore);
  3843. _mdns_service_semaphore = NULL;
  3844. return ESP_FAIL;
  3845. }
  3846. }
  3847. MDNS_SERVICE_UNLOCK();
  3848. return ESP_OK;
  3849. }
  3850. /**
  3851. * @brief Stop the service thread
  3852. *
  3853. * @return
  3854. * - ESP_OK
  3855. */
  3856. static esp_err_t _mdns_service_task_stop(void)
  3857. {
  3858. _mdns_stop_timer();
  3859. if (_mdns_service_task_handle) {
  3860. mdns_action_t action;
  3861. mdns_action_t * a = &action;
  3862. action.type = ACTION_TASK_STOP;
  3863. if (xQueueSend(_mdns_server->action_queue, &a, (portTickType)0) != pdPASS) {
  3864. vTaskDelete(_mdns_service_task_handle);
  3865. _mdns_service_task_handle = NULL;
  3866. }
  3867. while (_mdns_service_task_handle) {
  3868. vTaskDelay(10 / portTICK_PERIOD_MS);
  3869. }
  3870. }
  3871. vSemaphoreDelete(_mdns_service_semaphore);
  3872. _mdns_service_semaphore = NULL;
  3873. return ESP_OK;
  3874. }
  3875. /*
  3876. * Public Methods
  3877. * */
  3878. esp_err_t mdns_handle_system_event(void *ctx, system_event_t *event)
  3879. {
  3880. /* no-op, kept for compatibility */
  3881. return ESP_OK;
  3882. }
  3883. static void event_handler(void* arg, esp_event_base_t event_base,
  3884. int32_t event_id, void* event_data)
  3885. {
  3886. if (!_mdns_server) {
  3887. return;
  3888. }
  3889. mdns_action_t * action = (mdns_action_t *)calloc(1, sizeof(mdns_action_t));
  3890. if (!action) {
  3891. HOOK_MALLOC_FAILED;
  3892. return;
  3893. }
  3894. action->type = ACTION_SYSTEM_EVENT;
  3895. action->data.sys_event.event_base = event_base;
  3896. action->data.sys_event.event_id = event_id;
  3897. if (event_base == IP_EVENT && event_id == IP_EVENT_GOT_IP6) {
  3898. ip_event_got_ip6_t* event = (ip_event_got_ip6_t*) event_data;
  3899. action->data.sys_event.interface = event->esp_netif;
  3900. }
  3901. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  3902. free(action);
  3903. }
  3904. }
  3905. esp_err_t mdns_init(void)
  3906. {
  3907. esp_err_t err = ESP_OK;
  3908. if (_mdns_server) {
  3909. return err;
  3910. }
  3911. _mdns_server = (mdns_server_t *)malloc(sizeof(mdns_server_t));
  3912. if (!_mdns_server) {
  3913. HOOK_MALLOC_FAILED;
  3914. return ESP_ERR_NO_MEM;
  3915. }
  3916. memset((uint8_t*)_mdns_server, 0, sizeof(mdns_server_t));
  3917. // zero-out local copy of netifs to initiate a fresh search by interface key whenever a netif ptr is needed
  3918. memset(s_esp_netifs, 0, sizeof(s_esp_netifs));
  3919. _mdns_server->lock = xSemaphoreCreateMutex();
  3920. if (!_mdns_server->lock) {
  3921. err = ESP_ERR_NO_MEM;
  3922. goto free_server;
  3923. }
  3924. _mdns_server->action_queue = xQueueCreate(MDNS_ACTION_QUEUE_LEN, sizeof(mdns_action_t *));
  3925. if (!_mdns_server->action_queue) {
  3926. err = ESP_ERR_NO_MEM;
  3927. goto free_lock;
  3928. }
  3929. if ((err = esp_event_handler_register(WIFI_EVENT, ESP_EVENT_ANY_ID, &event_handler, NULL)) != ESP_OK) {
  3930. goto free_event_handlers;
  3931. }
  3932. if ((err = esp_event_handler_register(IP_EVENT, ESP_EVENT_ANY_ID, &event_handler, NULL)) != ESP_OK) {
  3933. goto free_event_handlers;
  3934. }
  3935. #if CONFIG_ETH_ENABLED
  3936. if ((err = esp_event_handler_register(ETH_EVENT, ESP_EVENT_ANY_ID, &event_handler, NULL)) != ESP_OK) {
  3937. goto free_event_handlers;
  3938. }
  3939. #endif
  3940. uint8_t i;
  3941. esp_ip6_addr_t tmp_addr6;
  3942. esp_netif_ip_info_t if_ip_info;
  3943. for (i=0; i<MDNS_IF_MAX; i++) {
  3944. if (!esp_netif_get_ip6_linklocal(_mdns_get_esp_netif(i), &tmp_addr6) && !_ipv6_address_is_zero(tmp_addr6)) {
  3945. _mdns_enable_pcb(i, MDNS_IP_PROTOCOL_V6);
  3946. }
  3947. if (!esp_netif_get_ip_info(_mdns_get_esp_netif(i), &if_ip_info) && if_ip_info.ip.addr) {
  3948. _mdns_enable_pcb(i, MDNS_IP_PROTOCOL_V4);
  3949. }
  3950. }
  3951. if (_mdns_service_task_start()) {
  3952. //service start failed!
  3953. err = ESP_FAIL;
  3954. goto free_all_and_disable_pcbs;
  3955. }
  3956. return ESP_OK;
  3957. free_all_and_disable_pcbs:
  3958. for (i=0; i<MDNS_IF_MAX; i++) {
  3959. _mdns_disable_pcb(i, MDNS_IP_PROTOCOL_V6);
  3960. _mdns_disable_pcb(i, MDNS_IP_PROTOCOL_V4);
  3961. }
  3962. free_event_handlers:
  3963. esp_event_handler_unregister(WIFI_EVENT, ESP_EVENT_ANY_ID, &event_handler);
  3964. esp_event_handler_unregister(IP_EVENT, ESP_EVENT_ANY_ID, &event_handler);
  3965. #if CONFIG_ETH_ENABLED
  3966. esp_event_handler_unregister(ETH_EVENT, ESP_EVENT_ANY_ID, &event_handler);
  3967. #endif
  3968. vQueueDelete(_mdns_server->action_queue);
  3969. free_lock:
  3970. vSemaphoreDelete(_mdns_server->lock);
  3971. free_server:
  3972. free(_mdns_server);
  3973. _mdns_server = NULL;
  3974. return err;
  3975. }
  3976. void mdns_free(void)
  3977. {
  3978. uint8_t i, j;
  3979. if (!_mdns_server) {
  3980. return;
  3981. }
  3982. // Unregister handlers before destroying the mdns internals to avoid receiving async events while deinit
  3983. esp_event_handler_unregister(WIFI_EVENT, ESP_EVENT_ANY_ID, &event_handler);
  3984. esp_event_handler_unregister(IP_EVENT, ESP_EVENT_ANY_ID, &event_handler);
  3985. #if CONFIG_ETH_ENABLED
  3986. esp_event_handler_unregister(ETH_EVENT, ESP_EVENT_ANY_ID, &event_handler);
  3987. #endif
  3988. mdns_service_remove_all();
  3989. _mdns_service_task_stop();
  3990. for (i=0; i<MDNS_IF_MAX; i++) {
  3991. for (j=0; j<MDNS_IP_PROTOCOL_MAX; j++) {
  3992. _mdns_pcb_deinit(i, j);
  3993. }
  3994. }
  3995. free((char*)_mdns_server->hostname);
  3996. free((char*)_mdns_server->instance);
  3997. if (_mdns_server->action_queue) {
  3998. mdns_action_t * c;
  3999. while (xQueueReceive(_mdns_server->action_queue, &c, 0) == pdTRUE) {
  4000. _mdns_free_action(c);
  4001. }
  4002. vQueueDelete(_mdns_server->action_queue);
  4003. }
  4004. _mdns_clear_tx_queue_head();
  4005. while (_mdns_server->search_once) {
  4006. mdns_search_once_t * h = _mdns_server->search_once;
  4007. _mdns_server->search_once = h->next;
  4008. free(h->instance);
  4009. free(h->service);
  4010. free(h->proto);
  4011. vSemaphoreDelete(h->done_semaphore);
  4012. if (h->result) {
  4013. mdns_query_results_free(h->result);
  4014. }
  4015. free(h);
  4016. }
  4017. vSemaphoreDelete(_mdns_server->lock);
  4018. free(_mdns_server);
  4019. _mdns_server = NULL;
  4020. }
  4021. esp_err_t mdns_hostname_set(const char * hostname)
  4022. {
  4023. if (!_mdns_server) {
  4024. return ESP_ERR_INVALID_ARG;
  4025. }
  4026. if (_str_null_or_empty(hostname) || strlen(hostname) > (MDNS_NAME_BUF_LEN - 1)) {
  4027. return ESP_ERR_INVALID_ARG;
  4028. }
  4029. char * new_hostname = strndup(hostname, MDNS_NAME_BUF_LEN - 1);
  4030. if (!new_hostname) {
  4031. return ESP_ERR_NO_MEM;
  4032. }
  4033. mdns_action_t * action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  4034. if (!action) {
  4035. HOOK_MALLOC_FAILED;
  4036. free(new_hostname);
  4037. return ESP_ERR_NO_MEM;
  4038. }
  4039. action->type = ACTION_HOSTNAME_SET;
  4040. action->data.hostname = new_hostname;
  4041. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  4042. free(new_hostname);
  4043. free(action);
  4044. return ESP_ERR_NO_MEM;
  4045. }
  4046. return ERR_OK;
  4047. }
  4048. esp_err_t mdns_instance_name_set(const char * instance)
  4049. {
  4050. if (!_mdns_server) {
  4051. return ESP_ERR_INVALID_ARG;
  4052. }
  4053. if (_str_null_or_empty(instance) || strlen(instance) > (MDNS_NAME_BUF_LEN - 1)) {
  4054. return ESP_ERR_INVALID_ARG;
  4055. }
  4056. char * new_instance = strndup(instance, MDNS_NAME_BUF_LEN - 1);
  4057. if (!new_instance) {
  4058. return ESP_ERR_NO_MEM;
  4059. }
  4060. mdns_action_t * action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  4061. if (!action) {
  4062. HOOK_MALLOC_FAILED;
  4063. free(new_instance);
  4064. return ESP_ERR_NO_MEM;
  4065. }
  4066. action->type = ACTION_INSTANCE_SET;
  4067. action->data.instance = new_instance;
  4068. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  4069. free(new_instance);
  4070. free(action);
  4071. return ESP_ERR_NO_MEM;
  4072. }
  4073. return ERR_OK;
  4074. }
  4075. /*
  4076. * MDNS SERVICES
  4077. * */
  4078. esp_err_t mdns_service_add(const char * instance, const char * service, const char * proto, uint16_t port, mdns_txt_item_t txt[], size_t num_items)
  4079. {
  4080. if (!_mdns_server || _str_null_or_empty(service) || _str_null_or_empty(proto) || !port) {
  4081. return ESP_ERR_INVALID_ARG;
  4082. }
  4083. if (!_mdns_can_add_more_services()) {
  4084. return ESP_ERR_NO_MEM;
  4085. }
  4086. mdns_srv_item_t * item = _mdns_get_service_item(service, proto);
  4087. if (item) {
  4088. return ESP_ERR_INVALID_ARG;
  4089. }
  4090. mdns_service_t * s = _mdns_create_service(service, proto, port, instance, num_items, txt);
  4091. if (!s) {
  4092. return ESP_ERR_NO_MEM;
  4093. }
  4094. item = (mdns_srv_item_t *)malloc(sizeof(mdns_srv_item_t));
  4095. if (!item) {
  4096. HOOK_MALLOC_FAILED;
  4097. _mdns_free_service(s);
  4098. return ESP_ERR_NO_MEM;
  4099. }
  4100. item->service = s;
  4101. item->next = NULL;
  4102. mdns_action_t * action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  4103. if (!action) {
  4104. HOOK_MALLOC_FAILED;
  4105. _mdns_free_service(s);
  4106. free(item);
  4107. return ESP_ERR_NO_MEM;
  4108. }
  4109. action->type = ACTION_SERVICE_ADD;
  4110. action->data.srv_add.service = item;
  4111. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  4112. _mdns_free_service(s);
  4113. free(item);
  4114. free(action);
  4115. return ESP_ERR_NO_MEM;
  4116. }
  4117. size_t start = xTaskGetTickCount();
  4118. size_t timeout_ticks = pdMS_TO_TICKS(MDNS_SERVICE_ADD_TIMEOUT_MS);
  4119. while (_mdns_get_service_item(service, proto) == NULL)
  4120. {
  4121. uint32_t expired = xTaskGetTickCount() - start;
  4122. if (expired >= timeout_ticks) {
  4123. return ESP_FAIL; // Timeout
  4124. }
  4125. vTaskDelay(MIN(10 / portTICK_RATE_MS, timeout_ticks - expired));
  4126. }
  4127. return ESP_OK;
  4128. }
  4129. esp_err_t mdns_service_port_set(const char * service, const char * proto, uint16_t port)
  4130. {
  4131. if (!_mdns_server || !_mdns_server->services || _str_null_or_empty(service) || _str_null_or_empty(proto) || !port) {
  4132. return ESP_ERR_INVALID_ARG;
  4133. }
  4134. mdns_srv_item_t * s = _mdns_get_service_item(service, proto);
  4135. if (!s) {
  4136. return ESP_ERR_NOT_FOUND;
  4137. }
  4138. mdns_action_t * action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  4139. if (!action) {
  4140. HOOK_MALLOC_FAILED;
  4141. return ESP_ERR_NO_MEM;
  4142. }
  4143. action->type = ACTION_SERVICE_PORT_SET;
  4144. action->data.srv_port.service = s;
  4145. action->data.srv_port.port = port;
  4146. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  4147. free(action);
  4148. return ESP_ERR_NO_MEM;
  4149. }
  4150. return ESP_OK;
  4151. }
  4152. esp_err_t mdns_service_txt_set(const char * service, const char * proto, mdns_txt_item_t txt[], uint8_t num_items)
  4153. {
  4154. if (!_mdns_server || !_mdns_server->services || _str_null_or_empty(service) || _str_null_or_empty(proto) || (num_items && txt == NULL)) {
  4155. return ESP_ERR_INVALID_ARG;
  4156. }
  4157. mdns_srv_item_t * s = _mdns_get_service_item(service, proto);
  4158. if (!s) {
  4159. return ESP_ERR_NOT_FOUND;
  4160. }
  4161. mdns_txt_linked_item_t * new_txt = NULL;
  4162. if (num_items){
  4163. new_txt = _mdns_allocate_txt(num_items, txt);
  4164. if (!new_txt) {
  4165. return ESP_ERR_NO_MEM;
  4166. }
  4167. }
  4168. mdns_action_t * action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  4169. if (!action) {
  4170. HOOK_MALLOC_FAILED;
  4171. _mdns_free_linked_txt(new_txt);
  4172. return ESP_ERR_NO_MEM;
  4173. }
  4174. action->type = ACTION_SERVICE_TXT_REPLACE;
  4175. action->data.srv_txt_replace.service = s;
  4176. action->data.srv_txt_replace.txt = new_txt;
  4177. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  4178. _mdns_free_linked_txt(new_txt);
  4179. free(action);
  4180. return ESP_ERR_NO_MEM;
  4181. }
  4182. return ESP_OK;
  4183. }
  4184. esp_err_t mdns_service_txt_item_set(const char * service, const char * proto, const char * key, const char * value)
  4185. {
  4186. if (!_mdns_server || !_mdns_server->services || _str_null_or_empty(service) || _str_null_or_empty(proto) || _str_null_or_empty(key) || !value) {
  4187. return ESP_ERR_INVALID_ARG;
  4188. }
  4189. mdns_srv_item_t * s = _mdns_get_service_item(service, proto);
  4190. if (!s) {
  4191. return ESP_ERR_NOT_FOUND;
  4192. }
  4193. mdns_action_t * action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  4194. if (!action) {
  4195. HOOK_MALLOC_FAILED;
  4196. return ESP_ERR_NO_MEM;
  4197. }
  4198. action->type = ACTION_SERVICE_TXT_SET;
  4199. action->data.srv_txt_set.service = s;
  4200. action->data.srv_txt_set.key = strdup(key);
  4201. if (!action->data.srv_txt_set.key) {
  4202. free(action);
  4203. return ESP_ERR_NO_MEM;
  4204. }
  4205. action->data.srv_txt_set.value = strdup(value);
  4206. if (!action->data.srv_txt_set.value) {
  4207. free(action->data.srv_txt_set.key);
  4208. free(action);
  4209. return ESP_ERR_NO_MEM;
  4210. }
  4211. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  4212. free(action->data.srv_txt_set.key);
  4213. free(action->data.srv_txt_set.value);
  4214. free(action);
  4215. return ESP_ERR_NO_MEM;
  4216. }
  4217. return ESP_OK;
  4218. }
  4219. esp_err_t mdns_service_txt_item_remove(const char * service, const char * proto, const char * key)
  4220. {
  4221. if (!_mdns_server || !_mdns_server->services || _str_null_or_empty(service) || _str_null_or_empty(proto) || _str_null_or_empty(key)) {
  4222. return ESP_ERR_INVALID_ARG;
  4223. }
  4224. mdns_srv_item_t * s = _mdns_get_service_item(service, proto);
  4225. if (!s) {
  4226. return ESP_ERR_NOT_FOUND;
  4227. }
  4228. mdns_action_t * action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  4229. if (!action) {
  4230. HOOK_MALLOC_FAILED;
  4231. return ESP_ERR_NO_MEM;
  4232. }
  4233. action->type = ACTION_SERVICE_TXT_DEL;
  4234. action->data.srv_txt_del.service = s;
  4235. action->data.srv_txt_del.key = strdup(key);
  4236. if (!action->data.srv_txt_del.key) {
  4237. free(action);
  4238. return ESP_ERR_NO_MEM;
  4239. }
  4240. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  4241. free(action->data.srv_txt_del.key);
  4242. free(action);
  4243. return ESP_ERR_NO_MEM;
  4244. }
  4245. return ESP_OK;
  4246. }
  4247. esp_err_t mdns_service_instance_name_set(const char * service, const char * proto, const char * instance)
  4248. {
  4249. if (!_mdns_server || !_mdns_server->services || _str_null_or_empty(service) || _str_null_or_empty(proto)) {
  4250. return ESP_ERR_INVALID_ARG;
  4251. }
  4252. if (_str_null_or_empty(instance) || strlen(instance) > (MDNS_NAME_BUF_LEN - 1)) {
  4253. return ESP_ERR_INVALID_ARG;
  4254. }
  4255. mdns_srv_item_t * s = _mdns_get_service_item(service, proto);
  4256. if (!s) {
  4257. return ESP_ERR_NOT_FOUND;
  4258. }
  4259. char * new_instance = strndup(instance, MDNS_NAME_BUF_LEN - 1);
  4260. if (!new_instance) {
  4261. return ESP_ERR_NO_MEM;
  4262. }
  4263. mdns_action_t * action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  4264. if (!action) {
  4265. HOOK_MALLOC_FAILED;
  4266. free(new_instance);
  4267. return ESP_ERR_NO_MEM;
  4268. }
  4269. action->type = ACTION_SERVICE_INSTANCE_SET;
  4270. action->data.srv_instance.service = s;
  4271. action->data.srv_instance.instance = new_instance;
  4272. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  4273. free(new_instance);
  4274. free(action);
  4275. return ESP_ERR_NO_MEM;
  4276. }
  4277. return ESP_OK;
  4278. }
  4279. esp_err_t mdns_service_remove(const char * service, const char * proto)
  4280. {
  4281. if (!_mdns_server || !_mdns_server->services || _str_null_or_empty(service) || _str_null_or_empty(proto)) {
  4282. return ESP_ERR_INVALID_ARG;
  4283. }
  4284. mdns_srv_item_t * s = _mdns_get_service_item(service, proto);
  4285. if (!s) {
  4286. return ESP_ERR_NOT_FOUND;
  4287. }
  4288. mdns_action_t * action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  4289. if (!action) {
  4290. HOOK_MALLOC_FAILED;
  4291. return ESP_ERR_NO_MEM;
  4292. }
  4293. action->type = ACTION_SERVICE_DEL;
  4294. action->data.srv_del.service = s;
  4295. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  4296. free(action);
  4297. return ESP_ERR_NO_MEM;
  4298. }
  4299. return ESP_OK;
  4300. }
  4301. esp_err_t mdns_service_remove_all(void)
  4302. {
  4303. if (!_mdns_server) {
  4304. return ESP_ERR_INVALID_ARG;
  4305. }
  4306. if (!_mdns_server->services) {
  4307. return ESP_OK;
  4308. }
  4309. mdns_action_t * action = (mdns_action_t *)malloc(sizeof(mdns_action_t));
  4310. if (!action) {
  4311. HOOK_MALLOC_FAILED;
  4312. return ESP_ERR_NO_MEM;
  4313. }
  4314. action->type = ACTION_SERVICES_CLEAR;
  4315. if (xQueueSend(_mdns_server->action_queue, &action, (portTickType)0) != pdPASS) {
  4316. free(action);
  4317. return ESP_ERR_NO_MEM;
  4318. }
  4319. return ESP_OK;
  4320. }
  4321. /*
  4322. * MDNS QUERY
  4323. * */
  4324. void mdns_query_results_free(mdns_result_t * results)
  4325. {
  4326. mdns_result_t * r;
  4327. mdns_ip_addr_t * a;
  4328. int i;
  4329. while (results) {
  4330. r = results;
  4331. free((char *)(r->hostname));
  4332. free((char *)(r->instance_name));
  4333. for (i=0; i<r->txt_count; i++) {
  4334. free((char *)(r->txt[i].key));
  4335. free((char *)(r->txt[i].value));
  4336. }
  4337. free(r->txt);
  4338. while (r->addr) {
  4339. a = r->addr;
  4340. r->addr = r->addr->next;
  4341. free(a);
  4342. }
  4343. results = results->next;
  4344. free(r);
  4345. }
  4346. }
  4347. esp_err_t mdns_query(const char * name, const char * service, const char * proto, uint16_t type, uint32_t timeout, size_t max_results, mdns_result_t ** results)
  4348. {
  4349. mdns_search_once_t * search = NULL;
  4350. *results = NULL;
  4351. if (!_mdns_server) {
  4352. return ESP_ERR_INVALID_STATE;
  4353. }
  4354. if (!timeout || _str_null_or_empty(service) != _str_null_or_empty(proto)) {
  4355. return ESP_ERR_INVALID_ARG;
  4356. }
  4357. search = _mdns_search_init(name, service, proto, type, timeout, max_results);
  4358. if (!search) {
  4359. return ESP_ERR_NO_MEM;
  4360. }
  4361. if (_mdns_send_search_action(ACTION_SEARCH_ADD, search)) {
  4362. _mdns_search_free(search);
  4363. return ESP_ERR_NO_MEM;
  4364. }
  4365. xSemaphoreTake(search->done_semaphore, portMAX_DELAY);
  4366. *results = search->result;
  4367. _mdns_search_free(search);
  4368. return ESP_OK;
  4369. }
  4370. esp_err_t mdns_query_ptr(const char * service, const char * proto, uint32_t timeout, size_t max_results, mdns_result_t ** results)
  4371. {
  4372. if (_str_null_or_empty(service) || _str_null_or_empty(proto)) {
  4373. return ESP_ERR_INVALID_ARG;
  4374. }
  4375. return mdns_query(NULL, service, proto, MDNS_TYPE_PTR, timeout, max_results, results);
  4376. }
  4377. esp_err_t mdns_query_srv(const char * instance, const char * service, const char * proto, uint32_t timeout, mdns_result_t ** result)
  4378. {
  4379. if (_str_null_or_empty(instance) || _str_null_or_empty(service) || _str_null_or_empty(proto)) {
  4380. return ESP_ERR_INVALID_ARG;
  4381. }
  4382. return mdns_query(instance, service, proto, MDNS_TYPE_SRV, timeout, 1, result);
  4383. }
  4384. esp_err_t mdns_query_txt(const char * instance, const char * service, const char * proto, uint32_t timeout, mdns_result_t ** result)
  4385. {
  4386. if (_str_null_or_empty(instance) || _str_null_or_empty(service) || _str_null_or_empty(proto)) {
  4387. return ESP_ERR_INVALID_ARG;
  4388. }
  4389. return mdns_query(instance, service, proto, MDNS_TYPE_TXT, timeout, 1, result);
  4390. }
  4391. esp_err_t mdns_query_a(const char * name, uint32_t timeout, esp_ip4_addr_t * addr)
  4392. {
  4393. mdns_result_t * result = NULL;
  4394. esp_err_t err;
  4395. if (_str_null_or_empty(name)) {
  4396. return ESP_ERR_INVALID_ARG;
  4397. }
  4398. err = mdns_query(name, NULL, NULL, MDNS_TYPE_A, timeout, 1, &result);
  4399. if (err) {
  4400. return err;
  4401. }
  4402. if (!result) {
  4403. return ESP_ERR_NOT_FOUND;
  4404. }
  4405. mdns_ip_addr_t * a = result->addr;
  4406. while (a) {
  4407. if (a->addr.type == IPADDR_TYPE_V4) {
  4408. addr->addr = a->addr.u_addr.ip4.addr;
  4409. mdns_query_results_free(result);
  4410. return ESP_OK;
  4411. }
  4412. a = a->next;
  4413. }
  4414. mdns_query_results_free(result);
  4415. return ESP_ERR_NOT_FOUND;
  4416. }
  4417. esp_err_t mdns_query_aaaa(const char * name, uint32_t timeout, esp_ip6_addr_t * addr)
  4418. {
  4419. mdns_result_t * result = NULL;
  4420. esp_err_t err;
  4421. if (_str_null_or_empty(name)) {
  4422. return ESP_ERR_INVALID_ARG;
  4423. }
  4424. err = mdns_query(name, NULL, NULL, MDNS_TYPE_AAAA, timeout, 1, &result);
  4425. if (err) {
  4426. return err;
  4427. }
  4428. if (!result) {
  4429. return ESP_ERR_NOT_FOUND;
  4430. }
  4431. mdns_ip_addr_t * a = result->addr;
  4432. while (a) {
  4433. if (a->addr.type == IPADDR_TYPE_V6) {
  4434. memcpy(addr->addr, a->addr.u_addr.ip6.addr, 16);
  4435. mdns_query_results_free(result);
  4436. return ESP_OK;
  4437. }
  4438. a = a->next;
  4439. }
  4440. mdns_query_results_free(result);
  4441. return ESP_ERR_NOT_FOUND;
  4442. }
  4443. #ifdef MDNS_ENABLE_DEBUG
  4444. void mdns_debug_packet(const uint8_t * data, size_t len)
  4445. {
  4446. static mdns_name_t n;
  4447. mdns_header_t header;
  4448. const uint8_t * content = data + MDNS_HEAD_LEN;
  4449. uint32_t t = xTaskGetTickCount() * portTICK_PERIOD_MS;
  4450. mdns_name_t * name = &n;
  4451. memset(name, 0, sizeof(mdns_name_t));
  4452. _mdns_dbg_printf("Packet[%u]: ", t);
  4453. header.id = _mdns_read_u16(data, MDNS_HEAD_ID_OFFSET);
  4454. header.flags.value = _mdns_read_u16(data, MDNS_HEAD_FLAGS_OFFSET);
  4455. header.questions = _mdns_read_u16(data, MDNS_HEAD_QUESTIONS_OFFSET);
  4456. header.answers = _mdns_read_u16(data, MDNS_HEAD_ANSWERS_OFFSET);
  4457. header.servers = _mdns_read_u16(data, MDNS_HEAD_SERVERS_OFFSET);
  4458. header.additional = _mdns_read_u16(data, MDNS_HEAD_ADDITIONAL_OFFSET);
  4459. _mdns_dbg_printf("%s",
  4460. (header.flags.value == MDNS_FLAGS_AUTHORITATIVE)?"AUTHORITATIVE\n":
  4461. (header.flags.value == MDNS_FLAGS_DISTRIBUTED)?"DISTRIBUTED\n":
  4462. (header.flags.value == 0)?"\n":" "
  4463. );
  4464. if (header.flags.value && header.flags.value != MDNS_FLAGS_AUTHORITATIVE) {
  4465. _mdns_dbg_printf("0x%04X\n", header.flags.value);
  4466. }
  4467. if (header.questions) {
  4468. uint8_t qs = header.questions;
  4469. while (qs--) {
  4470. content = _mdns_parse_fqdn(data, content, name);
  4471. if (!content) {
  4472. header.answers = 0;
  4473. header.additional = 0;
  4474. header.servers = 0;
  4475. _mdns_dbg_printf("ERROR: %s:%u\n", __FILE__, __LINE__);
  4476. break;
  4477. }
  4478. uint16_t type = _mdns_read_u16(content, MDNS_TYPE_OFFSET);
  4479. uint16_t mdns_class = _mdns_read_u16(content, MDNS_CLASS_OFFSET);
  4480. bool unicast = !!(mdns_class & 0x8000);
  4481. mdns_class &= 0x7FFF;
  4482. content = content + 4;
  4483. _mdns_dbg_printf(" Q: ");
  4484. if (unicast) {
  4485. _mdns_dbg_printf("*U* ");
  4486. }
  4487. if (type == MDNS_TYPE_PTR) {
  4488. _mdns_dbg_printf("%s.%s%s.%s.%s. PTR ", name->host, name->sub?"_sub.":"", name->service, name->proto, name->domain);
  4489. } else if (type == MDNS_TYPE_SRV) {
  4490. _mdns_dbg_printf("%s.%s%s.%s.%s. SRV ", name->host, name->sub?"_sub.":"", name->service, name->proto, name->domain);
  4491. } else if (type == MDNS_TYPE_TXT) {
  4492. _mdns_dbg_printf("%s.%s%s.%s.%s. TXT ", name->host, name->sub?"_sub.":"", name->service, name->proto, name->domain);
  4493. } else if (type == MDNS_TYPE_A) {
  4494. _mdns_dbg_printf("%s.%s. A ", name->host, name->domain);
  4495. } else if (type == MDNS_TYPE_AAAA) {
  4496. _mdns_dbg_printf("%s.%s. AAAA ", name->host, name->domain);
  4497. } else if (type == MDNS_TYPE_NSEC) {
  4498. _mdns_dbg_printf("%s.%s%s.%s.%s. NSEC ", name->host, name->sub?"_sub.":"", name->service, name->proto, name->domain);
  4499. } else if (type == MDNS_TYPE_ANY) {
  4500. _mdns_dbg_printf("%s.%s%s.%s.%s. ANY ", name->host, name->sub?"_sub.":"", name->service, name->proto, name->domain);
  4501. } else {
  4502. _mdns_dbg_printf("%s.%s%s.%s.%s. %04X ", name->host, name->sub?"_sub.":"", name->service, name->proto, name->domain, type);
  4503. }
  4504. if (mdns_class == 0x0001) {
  4505. _mdns_dbg_printf("IN");
  4506. } else {
  4507. _mdns_dbg_printf("%04X", mdns_class);
  4508. }
  4509. _mdns_dbg_printf("\n");
  4510. }
  4511. }
  4512. if (header.answers || header.servers || header.additional) {
  4513. uint16_t recordIndex = 0;
  4514. while (content < (data + len)) {
  4515. content = _mdns_parse_fqdn(data, content, name);
  4516. if (!content) {
  4517. _mdns_dbg_printf("ERROR: %s:%u\n", __FILE__, __LINE__);
  4518. break;
  4519. }
  4520. uint16_t type = _mdns_read_u16(content, MDNS_TYPE_OFFSET);
  4521. uint16_t mdns_class = _mdns_read_u16(content, MDNS_CLASS_OFFSET);
  4522. uint32_t ttl = _mdns_read_u32(content, MDNS_TTL_OFFSET);
  4523. uint16_t data_len = _mdns_read_u16(content, MDNS_LEN_OFFSET);
  4524. const uint8_t * data_ptr = content + MDNS_DATA_OFFSET;
  4525. bool flush = !!(mdns_class & 0x8000);
  4526. mdns_class &= 0x7FFF;
  4527. content = data_ptr + data_len;
  4528. if (content > (data + len)) {
  4529. _mdns_dbg_printf("ERROR: %s:%u\n", __FILE__, __LINE__);
  4530. break;
  4531. }
  4532. mdns_parsed_record_type_t record_type = MDNS_ANSWER;
  4533. if (recordIndex >= (header.answers + header.servers)) {
  4534. record_type = MDNS_EXTRA;
  4535. } else if (recordIndex >= (header.answers)) {
  4536. record_type = MDNS_NS;
  4537. }
  4538. recordIndex++;
  4539. if (record_type == MDNS_EXTRA) {
  4540. _mdns_dbg_printf(" X");
  4541. } else if (record_type == MDNS_NS) {
  4542. _mdns_dbg_printf(" S");
  4543. } else {
  4544. _mdns_dbg_printf(" A");
  4545. }
  4546. if (type == MDNS_TYPE_PTR) {
  4547. _mdns_dbg_printf(": %s%s%s.%s.%s. PTR ", name->host, name->host[0]?".":"", name->service, name->proto, name->domain);
  4548. } else if (type == MDNS_TYPE_SRV) {
  4549. _mdns_dbg_printf(": %s.%s.%s.%s. SRV ", name->host, name->service, name->proto, name->domain);
  4550. } else if (type == MDNS_TYPE_TXT) {
  4551. _mdns_dbg_printf(": %s.%s.%s.%s. TXT ", name->host, name->service, name->proto, name->domain);
  4552. } else if (type == MDNS_TYPE_A) {
  4553. _mdns_dbg_printf(": %s.%s. A ", name->host, name->domain);
  4554. } else if (type == MDNS_TYPE_AAAA) {
  4555. _mdns_dbg_printf(": %s.%s. AAAA ", name->host, name->domain);
  4556. } else if (type == MDNS_TYPE_NSEC) {
  4557. _mdns_dbg_printf(": %s.%s.%s.%s. NSEC ", name->host, name->service, name->proto, name->domain);
  4558. } else if (type == MDNS_TYPE_ANY) {
  4559. _mdns_dbg_printf(": %s.%s.%s.%s. ANY ", name->host, name->service, name->proto, name->domain);
  4560. } else if (type == MDNS_TYPE_OPT) {
  4561. _mdns_dbg_printf(": . OPT ");
  4562. } else {
  4563. _mdns_dbg_printf(": %s.%s.%s.%s. %04X ", name->host, name->service, name->proto, name->domain, type);
  4564. }
  4565. if (mdns_class == 0x0001) {
  4566. _mdns_dbg_printf("IN ");
  4567. } else {
  4568. _mdns_dbg_printf("%04X ", mdns_class);
  4569. }
  4570. if (flush) {
  4571. _mdns_dbg_printf("FLUSH ");
  4572. }
  4573. _mdns_dbg_printf("%u ", ttl);
  4574. _mdns_dbg_printf("[%u] ", data_len);
  4575. if (type == MDNS_TYPE_PTR) {
  4576. if (!_mdns_parse_fqdn(data, data_ptr, name)) {
  4577. _mdns_dbg_printf("ERROR: %s:%u\n", __FILE__, __LINE__);
  4578. continue;
  4579. }
  4580. _mdns_dbg_printf("%s.%s.%s.%s.\n", name->host, name->service, name->proto, name->domain);
  4581. } else if (type == MDNS_TYPE_SRV) {
  4582. if (!_mdns_parse_fqdn(data, data_ptr + MDNS_SRV_FQDN_OFFSET, name)) {
  4583. _mdns_dbg_printf("ERROR: %s:%u\n", __FILE__, __LINE__);
  4584. continue;
  4585. }
  4586. uint16_t priority = _mdns_read_u16(data_ptr, MDNS_SRV_PRIORITY_OFFSET);
  4587. uint16_t weight = _mdns_read_u16(data_ptr, MDNS_SRV_WEIGHT_OFFSET);
  4588. uint16_t port = _mdns_read_u16(data_ptr, MDNS_SRV_PORT_OFFSET);
  4589. _mdns_dbg_printf("%u %u %u %s.%s.\n", priority, weight, port, name->host, name->domain);
  4590. } else if (type == MDNS_TYPE_TXT) {
  4591. uint16_t i=0, y;
  4592. while (i < data_len) {
  4593. uint8_t partLen = data_ptr[i++];
  4594. if ((i+partLen) > data_len) {
  4595. _mdns_dbg_printf("ERROR: %s:%u\n", __FILE__, __LINE__);
  4596. break;
  4597. }
  4598. char txt[partLen+1];
  4599. for (y=0; y<partLen; y++) {
  4600. char d = data_ptr[i++];
  4601. txt[y] = d;
  4602. }
  4603. txt[partLen] = 0;
  4604. _mdns_dbg_printf("%s", txt);
  4605. if (i<data_len) {
  4606. _mdns_dbg_printf("; ");
  4607. }
  4608. }
  4609. _mdns_dbg_printf("\n");
  4610. } else if (type == MDNS_TYPE_AAAA) {
  4611. esp_ip6_addr_t ip6;
  4612. memcpy(&ip6, data_ptr, sizeof(esp_ip6_addr_t));
  4613. _mdns_dbg_printf(IPV6STR "\n", IPV62STR(ip6));
  4614. } else if (type == MDNS_TYPE_A) {
  4615. esp_ip4_addr_t ip;
  4616. memcpy(&ip, data_ptr, sizeof(esp_ip4_addr_t));
  4617. _mdns_dbg_printf(IPSTR "\n", IP2STR(&ip));
  4618. } else if (type == MDNS_TYPE_NSEC) {
  4619. const uint8_t * old_ptr = data_ptr;
  4620. const uint8_t * new_ptr = _mdns_parse_fqdn(data, data_ptr, name);
  4621. if (new_ptr) {
  4622. _mdns_dbg_printf("%s.%s.%s.%s. ", name->host, name->service, name->proto, name->domain);
  4623. size_t diff = new_ptr - old_ptr;
  4624. data_len -= diff;
  4625. data_ptr = new_ptr;
  4626. }
  4627. size_t i;
  4628. for (i=0; i<data_len; i++) {
  4629. _mdns_dbg_printf(" %02x", data_ptr[i]);
  4630. }
  4631. _mdns_dbg_printf("\n");
  4632. } else if (type == MDNS_TYPE_OPT) {
  4633. uint16_t opCode = _mdns_read_u16(data_ptr, 0);
  4634. uint16_t opLen = _mdns_read_u16(data_ptr, 2);
  4635. _mdns_dbg_printf(" Code: %04x Data[%u]:", opCode, opLen);
  4636. size_t i;
  4637. for (i=4; i<data_len; i++) {
  4638. _mdns_dbg_printf(" %02x", data_ptr[i]);
  4639. }
  4640. _mdns_dbg_printf("\n");
  4641. } else {
  4642. size_t i;
  4643. for (i=0; i<data_len; i++) {
  4644. _mdns_dbg_printf(" %02x", data_ptr[i]);
  4645. }
  4646. _mdns_dbg_printf("\n");
  4647. }
  4648. }
  4649. }
  4650. }
  4651. #endif