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https://github.com/espressif/esp-idf.git
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e1e481f438
By default adds original queries to responses in order to be resolved by some resolvers, such as lwIP mdns library. This functionality however is discouraged by the RFC6762, so it could be disabled in menuconfig if MDNS_STRICT_MODE configured Closes https://github.com/espressif/esp-idf/issues/5521
437 lines
13 KiB
C
437 lines
13 KiB
C
// Copyright 2015-2017 Espressif Systems (Shanghai) PTE LTD
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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#ifndef MDNS_PRIVATE_H_
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#define MDNS_PRIVATE_H_
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#include "esp_event_base.h"
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#include "esp_task.h"
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//#define MDNS_ENABLE_DEBUG
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#ifdef MDNS_ENABLE_DEBUG
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#define _mdns_dbg_printf(...) printf(__VA_ARGS__)
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#endif
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/** mDNS strict mode: Set this to 1 for the mDNS library to strictly follow the RFC6762:
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* Strict features:
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* - to do not set original questions in response packets per RFC6762, sec 6
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*
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* The actual configuration is 0, i.e. non-strict mode, since some implementations,
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* such as lwIP mdns resolver (used by standard POSIX API like getaddrinfo, gethostbyname)
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* could not correctly resolve advertised names.
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*/
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#define MDNS_STRICT_MODE 0
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#if !MDNS_STRICT_MODE
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/* mDNS responders sometimes repeat queries in responses
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* but according to RFC6762, sec 6: Responses MUST NOT contain
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* any item in question field */
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#define MDNS_REPEAT_QUERY_IN_RESPONSE 1
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#endif
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/** The maximum number of services */
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#define MDNS_MAX_SERVICES CONFIG_MDNS_MAX_SERVICES
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#define MDNS_ANSWER_PTR_TTL 4500
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#define MDNS_ANSWER_TXT_TTL 4500
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#define MDNS_ANSWER_SRV_TTL 120
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#define MDNS_ANSWER_A_TTL 120
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#define MDNS_ANSWER_AAAA_TTL 120
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#define MDNS_FLAGS_AUTHORITATIVE 0x8400
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#define MDNS_FLAGS_DISTRIBUTED 0x0200
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#define MDNS_NAME_REF 0xC000
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//custom type! only used by this implementation
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//to help manage service discovery handling
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#define MDNS_TYPE_SDPTR 0x0032
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#define MDNS_CLASS_IN 0x0001
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#define MDNS_CLASS_ANY 0x00FF
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#define MDNS_CLASS_IN_FLUSH_CACHE 0x8001
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#define MDNS_ANSWER_ALL 0x3F
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#define MDNS_ANSWER_PTR 0x08
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#define MDNS_ANSWER_TXT 0x04
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#define MDNS_ANSWER_SRV 0x02
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#define MDNS_ANSWER_A 0x01
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#define MDNS_ANSWER_AAAA 0x10
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#define MDNS_ANSWER_NSEC 0x20
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#define MDNS_ANSWER_SDPTR 0x80
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#define MDNS_ANSWER_AAAA_SIZE 16
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#define MDNS_SERVICE_PORT 5353 // UDP port that the server runs on
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#define MDNS_SERVICE_STACK_DEPTH CONFIG_MDNS_TASK_STACK_SIZE
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#define MDNS_TASK_PRIORITY CONFIG_MDNS_TASK_PRIORITY
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#if (MDNS_TASK_PRIORITY > ESP_TASK_PRIO_MAX)
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#error "mDNS task priority is higher than ESP_TASK_PRIO_MAX"
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#elif (MDNS_TASK_PRIORITY > ESP_TASKD_EVENT_PRIO)
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#warning "mDNS task priority is higher than ESP_TASKD_EVENT_PRIO, mDNS library might not work correctly"
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#endif
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#define MDNS_TASK_AFFINITY CONFIG_MDNS_TASK_AFFINITY
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#define MDNS_SERVICE_ADD_TIMEOUT_MS CONFIG_MDNS_SERVICE_ADD_TIMEOUT_MS
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#define MDNS_PACKET_QUEUE_LEN 16 // Maximum packets that can be queued for parsing
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#define MDNS_ACTION_QUEUE_LEN 16 // Maximum actions pending to the server
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#define MDNS_TXT_MAX_LEN 1024 // Maximum string length of text data in TXT record
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#define MDNS_NAME_MAX_LEN 64 // Maximum string length of hostname, instance, service and proto
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#define MDNS_NAME_BUF_LEN (MDNS_NAME_MAX_LEN+1) // Maximum char buffer size to hold hostname, instance, service or proto
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#define MDNS_MAX_PACKET_SIZE 1460 // Maximum size of mDNS outgoing packet
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#define MDNS_HEAD_LEN 12
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#define MDNS_HEAD_ID_OFFSET 0
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#define MDNS_HEAD_FLAGS_OFFSET 2
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#define MDNS_HEAD_QUESTIONS_OFFSET 4
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#define MDNS_HEAD_ANSWERS_OFFSET 6
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#define MDNS_HEAD_SERVERS_OFFSET 8
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#define MDNS_HEAD_ADDITIONAL_OFFSET 10
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#define MDNS_TYPE_OFFSET 0
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#define MDNS_CLASS_OFFSET 2
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#define MDNS_TTL_OFFSET 4
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#define MDNS_LEN_OFFSET 8
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#define MDNS_DATA_OFFSET 10
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#define MDNS_SRV_PRIORITY_OFFSET 0
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#define MDNS_SRV_WEIGHT_OFFSET 2
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#define MDNS_SRV_PORT_OFFSET 4
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#define MDNS_SRV_FQDN_OFFSET 6
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#define MDNS_TIMER_PERIOD_US (CONFIG_MDNS_TIMER_PERIOD_MS*1000)
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#define MDNS_SERVICE_LOCK() xSemaphoreTake(_mdns_service_semaphore, portMAX_DELAY)
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#define MDNS_SERVICE_UNLOCK() xSemaphoreGive(_mdns_service_semaphore)
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#define queueToEnd(type, queue, item) \
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if (!queue) { \
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queue = item; \
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} else { \
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type * _q = queue; \
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while (_q->next) { _q = _q->next; } \
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_q->next = item; \
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}
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#define queueDetach(type, queue, item) \
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if (queue) { \
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if (queue == item) { \
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queue = queue->next; \
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} else { \
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type * _q = queue; \
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while (_q->next && _q->next != item) { \
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_q = _q->next; \
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} \
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if (_q->next == item) { \
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_q->next = item->next; \
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item->next = NULL; \
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} \
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} \
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}
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#define queueFree(type, queue) while (queue) { type * _q = queue; queue = queue->next; free(_q); }
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#define PCB_STATE_IS_PROBING(s) (s->state > PCB_OFF && s->state < PCB_ANNOUNCE_1)
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#define PCB_STATE_IS_ANNOUNCING(s) (s->state > PCB_PROBE_3 && s->state < PCB_RUNNING)
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#define PCB_STATE_IS_RUNNING(s) (s->state == PCB_RUNNING)
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#ifndef HOOK_MALLOC_FAILED
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#define HOOK_MALLOC_FAILED ESP_LOGE(TAG, "Cannot allocate memory (line: %d, free heap: %d bytes)", __LINE__, esp_get_free_heap_size());
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#endif
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typedef enum {
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PCB_OFF, PCB_DUP, PCB_INIT,
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PCB_PROBE_1, PCB_PROBE_2, PCB_PROBE_3,
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PCB_ANNOUNCE_1, PCB_ANNOUNCE_2, PCB_ANNOUNCE_3,
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PCB_RUNNING
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} mdns_pcb_state_t;
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typedef enum {
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MDNS_ANSWER, MDNS_NS, MDNS_EXTRA
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} mdns_parsed_record_type_t;
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typedef enum {
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ACTION_SYSTEM_EVENT,
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ACTION_HOSTNAME_SET,
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ACTION_INSTANCE_SET,
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ACTION_SERVICE_ADD,
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ACTION_SERVICE_DEL,
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ACTION_SERVICE_INSTANCE_SET,
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ACTION_SERVICE_PORT_SET,
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ACTION_SERVICE_TXT_REPLACE,
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ACTION_SERVICE_TXT_SET,
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ACTION_SERVICE_TXT_DEL,
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ACTION_SERVICES_CLEAR,
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ACTION_SEARCH_ADD,
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ACTION_SEARCH_SEND,
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ACTION_SEARCH_END,
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ACTION_TX_HANDLE,
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ACTION_RX_HANDLE,
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ACTION_TASK_STOP,
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ACTION_MAX
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} mdns_action_type_t;
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typedef struct {
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uint16_t id;
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union {
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struct {
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uint16_t qr :1;
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uint16_t opCode :4;
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uint16_t aa :1;
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uint16_t tc :1;
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uint16_t rd :1;
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uint16_t ra :1;
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uint16_t z :1;
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uint16_t ad :1;
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uint16_t cd :1;
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uint16_t rCode :4;//response/error code
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};
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uint16_t value;
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} flags;
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uint16_t questions; //QDCOUNT
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uint16_t answers; //ANCOUNT
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uint16_t servers; //NSCOUNT
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uint16_t additional;//ARCOUNT
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} mdns_header_t;
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typedef struct {
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char host[MDNS_NAME_BUF_LEN];
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char service[MDNS_NAME_BUF_LEN];
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char proto[MDNS_NAME_BUF_LEN];
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char domain[MDNS_NAME_BUF_LEN];
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uint8_t parts;
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uint8_t sub;
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bool invalid;
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} mdns_name_t;
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typedef struct mdns_parsed_question_s {
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struct mdns_parsed_question_s * next;
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uint16_t type;
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bool unicast;
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char * host;
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char * service;
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char * proto;
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char * domain;
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} mdns_parsed_question_t;
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typedef struct mdns_parsed_record_s {
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struct mdns_parsed_record_s * next;
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mdns_parsed_record_type_t record_type;
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uint16_t type;
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uint16_t clas;
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uint8_t flush;
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uint32_t ttl;
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char * host;
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char * service;
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char * proto;
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char * domain;
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uint16_t data_len;
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uint8_t *data;
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} mdns_parsed_record_t;
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typedef struct {
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mdns_if_t tcpip_if;
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mdns_ip_protocol_t ip_protocol;
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//struct udp_pcb *pcb;
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esp_ip_addr_t src;
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uint16_t src_port;
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uint8_t multicast;
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uint8_t authoritative;
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uint8_t probe;
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uint8_t discovery;
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uint8_t distributed;
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mdns_parsed_question_t * questions;
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mdns_parsed_record_t * records;
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uint16_t id;
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} mdns_parsed_packet_t;
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typedef struct {
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mdns_if_t tcpip_if;
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mdns_ip_protocol_t ip_protocol;
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struct pbuf *pb;
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esp_ip_addr_t src;
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esp_ip_addr_t dest;
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uint16_t src_port;
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uint8_t multicast;
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} mdns_rx_packet_t;
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typedef struct mdns_txt_linked_item_s {
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const char * key; /*!< item key name */
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const char * value; /*!< item value string */
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struct mdns_txt_linked_item_s * next; /*!< next result, or NULL for the last result in the list */
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} mdns_txt_linked_item_t;
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typedef struct {
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const char * instance;
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const char * service;
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const char * proto;
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uint16_t priority;
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uint16_t weight;
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uint16_t port;
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mdns_txt_linked_item_t * txt;
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} mdns_service_t;
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typedef struct mdns_srv_item_s {
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struct mdns_srv_item_s * next;
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mdns_service_t * service;
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} mdns_srv_item_t;
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typedef struct mdns_out_question_s {
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struct mdns_out_question_s * next;
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uint16_t type;
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bool unicast;
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const char * host;
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const char * service;
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const char * proto;
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const char * domain;
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} mdns_out_question_t;
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typedef struct mdns_out_answer_s {
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struct mdns_out_answer_s * next;
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uint16_t type;
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uint8_t bye;
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uint8_t flush;
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mdns_service_t * service;
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const char * custom_instance;
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const char * custom_service;
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const char * custom_proto;
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} mdns_out_answer_t;
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typedef struct mdns_tx_packet_s {
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struct mdns_tx_packet_s * next;
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uint32_t send_at;
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mdns_if_t tcpip_if;
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mdns_ip_protocol_t ip_protocol;
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esp_ip_addr_t dst;
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uint16_t port;
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uint16_t flags;
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uint8_t distributed;
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mdns_out_question_t * questions;
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mdns_out_answer_t * answers;
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mdns_out_answer_t * servers;
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mdns_out_answer_t * additional;
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bool queued;
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uint16_t id;
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} mdns_tx_packet_t;
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typedef struct {
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mdns_pcb_state_t state;
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struct udp_pcb * pcb;
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mdns_srv_item_t ** probe_services;
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uint8_t probe_services_len;
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uint8_t probe_ip;
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uint8_t probe_running;
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uint16_t failed_probes;
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} mdns_pcb_t;
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typedef enum {
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SEARCH_OFF,
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SEARCH_INIT,
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SEARCH_RUNNING,
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SEARCH_MAX
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} mdns_search_once_state_t;
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typedef struct mdns_search_once_s {
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struct mdns_search_once_s * next;
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mdns_search_once_state_t state;
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uint32_t started_at;
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uint32_t sent_at;
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uint32_t timeout;
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SemaphoreHandle_t done_semaphore;
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uint16_t type;
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uint8_t max_results;
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uint8_t num_results;
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char * instance;
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char * service;
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char * proto;
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mdns_result_t * result;
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} mdns_search_once_t;
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typedef struct mdns_server_s {
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struct {
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mdns_pcb_t pcbs[MDNS_IP_PROTOCOL_MAX];
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} interfaces[MDNS_IF_MAX];
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const char * hostname;
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const char * instance;
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mdns_srv_item_t * services;
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SemaphoreHandle_t lock;
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QueueHandle_t action_queue;
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mdns_tx_packet_t * tx_queue_head;
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mdns_search_once_t * search_once;
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esp_timer_handle_t timer_handle;
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} mdns_server_t;
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typedef struct {
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mdns_action_type_t type;
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union {
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char * hostname;
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char * instance;
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struct {
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esp_event_base_t event_base;
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int32_t event_id;
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esp_netif_t* interface;
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} sys_event;
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struct {
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mdns_srv_item_t * service;
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} srv_add;
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struct {
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mdns_srv_item_t * service;
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} srv_del;
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struct {
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mdns_srv_item_t * service;
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char * instance;
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} srv_instance;
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struct {
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mdns_srv_item_t * service;
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uint16_t port;
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} srv_port;
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struct {
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mdns_srv_item_t * service;
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mdns_txt_linked_item_t * txt;
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} srv_txt_replace;
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struct {
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mdns_srv_item_t * service;
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char * key;
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char * value;
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} srv_txt_set;
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struct {
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mdns_srv_item_t * service;
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char * key;
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} srv_txt_del;
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struct {
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mdns_search_once_t * search;
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} search_add;
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struct {
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mdns_tx_packet_t * packet;
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} tx_handle;
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struct {
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mdns_rx_packet_t * packet;
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} rx_handle;
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} data;
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} mdns_action_t;
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/*
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* @brief Convert mnds if to esp-netif handle
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*
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* @param tcpip_if mdns supported interface as internal enum
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*
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* @return
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* - ptr to esp-netif on success
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* - NULL if no available netif for current interface index
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*/
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esp_netif_t *_mdns_get_esp_netif(mdns_if_t tcpip_if);
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#endif /* MDNS_PRIVATE_H_ */
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